gcc/cp:
[official-gcc.git] / gcc / builtins.c
blob402bb1fb14762e1b50d6fa84abff8673845f0d74
1 /* Expand builtin functions.
2 Copyright (C) 1988-2013 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 3, or (at your option) any later
9 version.
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
14 for more details.
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
20 #include "config.h"
21 #include "system.h"
22 #include "coretypes.h"
23 #include "tm.h"
24 #include "machmode.h"
25 #include "rtl.h"
26 #include "tree.h"
27 #include "realmpfr.h"
28 #include "gimple.h"
29 #include "flags.h"
30 #include "regs.h"
31 #include "hard-reg-set.h"
32 #include "except.h"
33 #include "function.h"
34 #include "insn-config.h"
35 #include "expr.h"
36 #include "optabs.h"
37 #include "libfuncs.h"
38 #include "recog.h"
39 #include "output.h"
40 #include "typeclass.h"
41 #include "predict.h"
42 #include "tm_p.h"
43 #include "target.h"
44 #include "langhooks.h"
45 #include "basic-block.h"
46 #include "tree-mudflap.h"
47 #include "tree-flow.h"
48 #include "value-prof.h"
49 #include "diagnostic-core.h"
50 #include "builtins.h"
53 #ifndef PAD_VARARGS_DOWN
54 #define PAD_VARARGS_DOWN BYTES_BIG_ENDIAN
55 #endif
56 static tree do_mpc_arg1 (tree, tree, int (*)(mpc_ptr, mpc_srcptr, mpc_rnd_t));
58 struct target_builtins default_target_builtins;
59 #if SWITCHABLE_TARGET
60 struct target_builtins *this_target_builtins = &default_target_builtins;
61 #endif
63 /* Define the names of the builtin function types and codes. */
64 const char *const built_in_class_names[4]
65 = {"NOT_BUILT_IN", "BUILT_IN_FRONTEND", "BUILT_IN_MD", "BUILT_IN_NORMAL"};
67 #define DEF_BUILTIN(X, N, C, T, LT, B, F, NA, AT, IM, COND) #X,
68 const char * built_in_names[(int) END_BUILTINS] =
70 #include "builtins.def"
72 #undef DEF_BUILTIN
74 /* Setup an array of _DECL trees, make sure each element is
75 initialized to NULL_TREE. */
76 builtin_info_type builtin_info;
78 /* Non-zero if __builtin_constant_p should be folded right away. */
79 bool force_folding_builtin_constant_p;
81 static const char *c_getstr (tree);
82 static rtx c_readstr (const char *, enum machine_mode);
83 static int target_char_cast (tree, char *);
84 static rtx get_memory_rtx (tree, tree);
85 static int apply_args_size (void);
86 static int apply_result_size (void);
87 #if defined (HAVE_untyped_call) || defined (HAVE_untyped_return)
88 static rtx result_vector (int, rtx);
89 #endif
90 static void expand_builtin_update_setjmp_buf (rtx);
91 static void expand_builtin_prefetch (tree);
92 static rtx expand_builtin_apply_args (void);
93 static rtx expand_builtin_apply_args_1 (void);
94 static rtx expand_builtin_apply (rtx, rtx, rtx);
95 static void expand_builtin_return (rtx);
96 static enum type_class type_to_class (tree);
97 static rtx expand_builtin_classify_type (tree);
98 static void expand_errno_check (tree, rtx);
99 static rtx expand_builtin_mathfn (tree, rtx, rtx);
100 static rtx expand_builtin_mathfn_2 (tree, rtx, rtx);
101 static rtx expand_builtin_mathfn_3 (tree, rtx, rtx);
102 static rtx expand_builtin_mathfn_ternary (tree, rtx, rtx);
103 static rtx expand_builtin_interclass_mathfn (tree, rtx);
104 static rtx expand_builtin_sincos (tree);
105 static rtx expand_builtin_cexpi (tree, rtx);
106 static rtx expand_builtin_int_roundingfn (tree, rtx);
107 static rtx expand_builtin_int_roundingfn_2 (tree, rtx);
108 static rtx expand_builtin_next_arg (void);
109 static rtx expand_builtin_va_start (tree);
110 static rtx expand_builtin_va_end (tree);
111 static rtx expand_builtin_va_copy (tree);
112 static rtx expand_builtin_memcmp (tree, rtx, enum machine_mode);
113 static rtx expand_builtin_strcmp (tree, rtx);
114 static rtx expand_builtin_strncmp (tree, rtx, enum machine_mode);
115 static rtx builtin_memcpy_read_str (void *, HOST_WIDE_INT, enum machine_mode);
116 static rtx expand_builtin_memcpy (tree, rtx);
117 static rtx expand_builtin_mempcpy (tree, rtx, enum machine_mode);
118 static rtx expand_builtin_mempcpy_args (tree, tree, tree, rtx,
119 enum machine_mode, int);
120 static rtx expand_builtin_strcpy (tree, rtx);
121 static rtx expand_builtin_strcpy_args (tree, tree, rtx);
122 static rtx expand_builtin_stpcpy (tree, rtx, enum machine_mode);
123 static rtx expand_builtin_strncpy (tree, rtx);
124 static rtx builtin_memset_gen_str (void *, HOST_WIDE_INT, enum machine_mode);
125 static rtx expand_builtin_memset (tree, rtx, enum machine_mode);
126 static rtx expand_builtin_memset_args (tree, tree, tree, rtx, enum machine_mode, tree);
127 static rtx expand_builtin_bzero (tree);
128 static rtx expand_builtin_strlen (tree, rtx, enum machine_mode);
129 static rtx expand_builtin_alloca (tree, bool);
130 static rtx expand_builtin_unop (enum machine_mode, tree, rtx, rtx, optab);
131 static rtx expand_builtin_frame_address (tree, tree);
132 static tree stabilize_va_list_loc (location_t, tree, int);
133 static rtx expand_builtin_expect (tree, rtx);
134 static tree fold_builtin_constant_p (tree);
135 static tree fold_builtin_expect (location_t, tree, tree);
136 static tree fold_builtin_classify_type (tree);
137 static tree fold_builtin_strlen (location_t, tree, tree);
138 static tree fold_builtin_inf (location_t, tree, int);
139 static tree fold_builtin_nan (tree, tree, int);
140 static tree rewrite_call_expr (location_t, tree, int, tree, int, ...);
141 static bool validate_arg (const_tree, enum tree_code code);
142 static bool integer_valued_real_p (tree);
143 static tree fold_trunc_transparent_mathfn (location_t, tree, tree);
144 static bool readonly_data_expr (tree);
145 static rtx expand_builtin_fabs (tree, rtx, rtx);
146 static rtx expand_builtin_signbit (tree, rtx);
147 static tree fold_builtin_sqrt (location_t, tree, tree);
148 static tree fold_builtin_cbrt (location_t, tree, tree);
149 static tree fold_builtin_pow (location_t, tree, tree, tree, tree);
150 static tree fold_builtin_powi (location_t, tree, tree, tree, tree);
151 static tree fold_builtin_cos (location_t, tree, tree, tree);
152 static tree fold_builtin_cosh (location_t, tree, tree, tree);
153 static tree fold_builtin_tan (tree, tree);
154 static tree fold_builtin_trunc (location_t, tree, tree);
155 static tree fold_builtin_floor (location_t, tree, tree);
156 static tree fold_builtin_ceil (location_t, tree, tree);
157 static tree fold_builtin_round (location_t, tree, tree);
158 static tree fold_builtin_int_roundingfn (location_t, tree, tree);
159 static tree fold_builtin_bitop (tree, tree);
160 static tree fold_builtin_memory_op (location_t, tree, tree, tree, tree, bool, int);
161 static tree fold_builtin_strchr (location_t, tree, tree, tree);
162 static tree fold_builtin_memchr (location_t, tree, tree, tree, tree);
163 static tree fold_builtin_memcmp (location_t, tree, tree, tree);
164 static tree fold_builtin_strcmp (location_t, tree, tree);
165 static tree fold_builtin_strncmp (location_t, tree, tree, tree);
166 static tree fold_builtin_signbit (location_t, tree, tree);
167 static tree fold_builtin_copysign (location_t, tree, tree, tree, tree);
168 static tree fold_builtin_isascii (location_t, tree);
169 static tree fold_builtin_toascii (location_t, tree);
170 static tree fold_builtin_isdigit (location_t, tree);
171 static tree fold_builtin_fabs (location_t, tree, tree);
172 static tree fold_builtin_abs (location_t, tree, tree);
173 static tree fold_builtin_unordered_cmp (location_t, tree, tree, tree, enum tree_code,
174 enum tree_code);
175 static tree fold_builtin_n (location_t, tree, tree *, int, bool);
176 static tree fold_builtin_0 (location_t, tree, bool);
177 static tree fold_builtin_1 (location_t, tree, tree, bool);
178 static tree fold_builtin_2 (location_t, tree, tree, tree, bool);
179 static tree fold_builtin_3 (location_t, tree, tree, tree, tree, bool);
180 static tree fold_builtin_4 (location_t, tree, tree, tree, tree, tree, bool);
181 static tree fold_builtin_varargs (location_t, tree, tree, bool);
183 static tree fold_builtin_strpbrk (location_t, tree, tree, tree);
184 static tree fold_builtin_strstr (location_t, tree, tree, tree);
185 static tree fold_builtin_strrchr (location_t, tree, tree, tree);
186 static tree fold_builtin_strcat (location_t, tree, tree);
187 static tree fold_builtin_strncat (location_t, tree, tree, tree);
188 static tree fold_builtin_strspn (location_t, tree, tree);
189 static tree fold_builtin_strcspn (location_t, tree, tree);
190 static tree fold_builtin_sprintf (location_t, tree, tree, tree, int);
191 static tree fold_builtin_snprintf (location_t, tree, tree, tree, tree, int);
193 static rtx expand_builtin_object_size (tree);
194 static rtx expand_builtin_memory_chk (tree, rtx, enum machine_mode,
195 enum built_in_function);
196 static void maybe_emit_chk_warning (tree, enum built_in_function);
197 static void maybe_emit_sprintf_chk_warning (tree, enum built_in_function);
198 static void maybe_emit_free_warning (tree);
199 static tree fold_builtin_object_size (tree, tree);
200 static tree fold_builtin_strcat_chk (location_t, tree, tree, tree, tree);
201 static tree fold_builtin_strncat_chk (location_t, tree, tree, tree, tree, tree);
202 static tree fold_builtin_sprintf_chk (location_t, tree, enum built_in_function);
203 static tree fold_builtin_printf (location_t, tree, tree, tree, bool, enum built_in_function);
204 static tree fold_builtin_fprintf (location_t, tree, tree, tree, tree, bool,
205 enum built_in_function);
206 static bool init_target_chars (void);
208 static unsigned HOST_WIDE_INT target_newline;
209 static unsigned HOST_WIDE_INT target_percent;
210 static unsigned HOST_WIDE_INT target_c;
211 static unsigned HOST_WIDE_INT target_s;
212 static char target_percent_c[3];
213 static char target_percent_s[3];
214 static char target_percent_s_newline[4];
215 static tree do_mpfr_arg1 (tree, tree, int (*)(mpfr_ptr, mpfr_srcptr, mp_rnd_t),
216 const REAL_VALUE_TYPE *, const REAL_VALUE_TYPE *, bool);
217 static tree do_mpfr_arg2 (tree, tree, tree,
218 int (*)(mpfr_ptr, mpfr_srcptr, mpfr_srcptr, mp_rnd_t));
219 static tree do_mpfr_arg3 (tree, tree, tree, tree,
220 int (*)(mpfr_ptr, mpfr_srcptr, mpfr_srcptr, mpfr_srcptr, mp_rnd_t));
221 static tree do_mpfr_sincos (tree, tree, tree);
222 static tree do_mpfr_bessel_n (tree, tree, tree,
223 int (*)(mpfr_ptr, long, mpfr_srcptr, mp_rnd_t),
224 const REAL_VALUE_TYPE *, bool);
225 static tree do_mpfr_remquo (tree, tree, tree);
226 static tree do_mpfr_lgamma_r (tree, tree, tree);
227 static void expand_builtin_sync_synchronize (void);
229 /* Return true if NAME starts with __builtin_ or __sync_. */
231 static bool
232 is_builtin_name (const char *name)
234 if (strncmp (name, "__builtin_", 10) == 0)
235 return true;
236 if (strncmp (name, "__sync_", 7) == 0)
237 return true;
238 if (strncmp (name, "__atomic_", 9) == 0)
239 return true;
240 return false;
244 /* Return true if DECL is a function symbol representing a built-in. */
246 bool
247 is_builtin_fn (tree decl)
249 return TREE_CODE (decl) == FUNCTION_DECL && DECL_BUILT_IN (decl);
253 /* Return true if NODE should be considered for inline expansion regardless
254 of the optimization level. This means whenever a function is invoked with
255 its "internal" name, which normally contains the prefix "__builtin". */
257 static bool
258 called_as_built_in (tree node)
260 /* Note that we must use DECL_NAME, not DECL_ASSEMBLER_NAME_SET_P since
261 we want the name used to call the function, not the name it
262 will have. */
263 const char *name = IDENTIFIER_POINTER (DECL_NAME (node));
264 return is_builtin_name (name);
267 /* Compute values M and N such that M divides (address of EXP - N) and such
268 that N < M. If these numbers can be determined, store M in alignp and N in
269 *BITPOSP and return true. Otherwise return false and store BITS_PER_UNIT to
270 *alignp and any bit-offset to *bitposp.
272 Note that the address (and thus the alignment) computed here is based
273 on the address to which a symbol resolves, whereas DECL_ALIGN is based
274 on the address at which an object is actually located. These two
275 addresses are not always the same. For example, on ARM targets,
276 the address &foo of a Thumb function foo() has the lowest bit set,
277 whereas foo() itself starts on an even address.
279 If ADDR_P is true we are taking the address of the memory reference EXP
280 and thus cannot rely on the access taking place. */
282 static bool
283 get_object_alignment_2 (tree exp, unsigned int *alignp,
284 unsigned HOST_WIDE_INT *bitposp, bool addr_p)
286 HOST_WIDE_INT bitsize, bitpos;
287 tree offset;
288 enum machine_mode mode;
289 int unsignedp, volatilep;
290 unsigned int inner, align = BITS_PER_UNIT;
291 bool known_alignment = false;
293 /* Get the innermost object and the constant (bitpos) and possibly
294 variable (offset) offset of the access. */
295 exp = get_inner_reference (exp, &bitsize, &bitpos, &offset,
296 &mode, &unsignedp, &volatilep, true);
298 /* Extract alignment information from the innermost object and
299 possibly adjust bitpos and offset. */
300 if (TREE_CODE (exp) == FUNCTION_DECL)
302 /* Function addresses can encode extra information besides their
303 alignment. However, if TARGET_PTRMEMFUNC_VBIT_LOCATION
304 allows the low bit to be used as a virtual bit, we know
305 that the address itself must be at least 2-byte aligned. */
306 if (TARGET_PTRMEMFUNC_VBIT_LOCATION == ptrmemfunc_vbit_in_pfn)
307 align = 2 * BITS_PER_UNIT;
309 else if (TREE_CODE (exp) == LABEL_DECL)
311 else if (TREE_CODE (exp) == CONST_DECL)
313 /* The alignment of a CONST_DECL is determined by its initializer. */
314 exp = DECL_INITIAL (exp);
315 align = TYPE_ALIGN (TREE_TYPE (exp));
316 #ifdef CONSTANT_ALIGNMENT
317 if (CONSTANT_CLASS_P (exp))
318 align = (unsigned) CONSTANT_ALIGNMENT (exp, align);
319 #endif
320 known_alignment = true;
322 else if (DECL_P (exp))
324 align = DECL_ALIGN (exp);
325 known_alignment = true;
327 else if (TREE_CODE (exp) == VIEW_CONVERT_EXPR)
329 align = TYPE_ALIGN (TREE_TYPE (exp));
331 else if (TREE_CODE (exp) == INDIRECT_REF
332 || TREE_CODE (exp) == MEM_REF
333 || TREE_CODE (exp) == TARGET_MEM_REF)
335 tree addr = TREE_OPERAND (exp, 0);
336 unsigned ptr_align;
337 unsigned HOST_WIDE_INT ptr_bitpos;
339 if (TREE_CODE (addr) == BIT_AND_EXPR
340 && TREE_CODE (TREE_OPERAND (addr, 1)) == INTEGER_CST)
342 align = (TREE_INT_CST_LOW (TREE_OPERAND (addr, 1))
343 & -TREE_INT_CST_LOW (TREE_OPERAND (addr, 1)));
344 align *= BITS_PER_UNIT;
345 addr = TREE_OPERAND (addr, 0);
348 known_alignment
349 = get_pointer_alignment_1 (addr, &ptr_align, &ptr_bitpos);
350 align = MAX (ptr_align, align);
352 /* The alignment of the pointer operand in a TARGET_MEM_REF
353 has to take the variable offset parts into account. */
354 if (TREE_CODE (exp) == TARGET_MEM_REF)
356 if (TMR_INDEX (exp))
358 unsigned HOST_WIDE_INT step = 1;
359 if (TMR_STEP (exp))
360 step = TREE_INT_CST_LOW (TMR_STEP (exp));
361 align = MIN (align, (step & -step) * BITS_PER_UNIT);
363 if (TMR_INDEX2 (exp))
364 align = BITS_PER_UNIT;
365 known_alignment = false;
368 /* When EXP is an actual memory reference then we can use
369 TYPE_ALIGN of a pointer indirection to derive alignment.
370 Do so only if get_pointer_alignment_1 did not reveal absolute
371 alignment knowledge and if using that alignment would
372 improve the situation. */
373 if (!addr_p && !known_alignment
374 && TYPE_ALIGN (TREE_TYPE (exp)) > align)
375 align = TYPE_ALIGN (TREE_TYPE (exp));
376 else
378 /* Else adjust bitpos accordingly. */
379 bitpos += ptr_bitpos;
380 if (TREE_CODE (exp) == MEM_REF
381 || TREE_CODE (exp) == TARGET_MEM_REF)
382 bitpos += mem_ref_offset (exp).low * BITS_PER_UNIT;
385 else if (TREE_CODE (exp) == STRING_CST)
387 /* STRING_CST are the only constant objects we allow to be not
388 wrapped inside a CONST_DECL. */
389 align = TYPE_ALIGN (TREE_TYPE (exp));
390 #ifdef CONSTANT_ALIGNMENT
391 if (CONSTANT_CLASS_P (exp))
392 align = (unsigned) CONSTANT_ALIGNMENT (exp, align);
393 #endif
394 known_alignment = true;
397 /* If there is a non-constant offset part extract the maximum
398 alignment that can prevail. */
399 inner = ~0U;
400 while (offset)
402 tree next_offset;
404 if (TREE_CODE (offset) == PLUS_EXPR)
406 next_offset = TREE_OPERAND (offset, 0);
407 offset = TREE_OPERAND (offset, 1);
409 else
410 next_offset = NULL;
411 if (host_integerp (offset, 1))
413 /* Any overflow in calculating offset_bits won't change
414 the alignment. */
415 unsigned offset_bits
416 = ((unsigned) tree_low_cst (offset, 1) * BITS_PER_UNIT);
418 if (offset_bits)
419 inner = MIN (inner, (offset_bits & -offset_bits));
421 else if (TREE_CODE (offset) == MULT_EXPR
422 && host_integerp (TREE_OPERAND (offset, 1), 1))
424 /* Any overflow in calculating offset_factor won't change
425 the alignment. */
426 unsigned offset_factor
427 = ((unsigned) tree_low_cst (TREE_OPERAND (offset, 1), 1)
428 * BITS_PER_UNIT);
430 if (offset_factor)
431 inner = MIN (inner, (offset_factor & -offset_factor));
433 else
435 inner = MIN (inner, BITS_PER_UNIT);
436 break;
438 offset = next_offset;
440 /* Alignment is innermost object alignment adjusted by the constant
441 and non-constant offset parts. */
442 align = MIN (align, inner);
444 *alignp = align;
445 *bitposp = bitpos & (*alignp - 1);
446 return known_alignment;
449 /* For a memory reference expression EXP compute values M and N such that M
450 divides (&EXP - N) and such that N < M. If these numbers can be determined,
451 store M in alignp and N in *BITPOSP and return true. Otherwise return false
452 and store BITS_PER_UNIT to *alignp and any bit-offset to *bitposp. */
454 bool
455 get_object_alignment_1 (tree exp, unsigned int *alignp,
456 unsigned HOST_WIDE_INT *bitposp)
458 return get_object_alignment_2 (exp, alignp, bitposp, false);
461 /* Return the alignment in bits of EXP, an object. */
463 unsigned int
464 get_object_alignment (tree exp)
466 unsigned HOST_WIDE_INT bitpos = 0;
467 unsigned int align;
469 get_object_alignment_1 (exp, &align, &bitpos);
471 /* align and bitpos now specify known low bits of the pointer.
472 ptr & (align - 1) == bitpos. */
474 if (bitpos != 0)
475 align = (bitpos & -bitpos);
476 return align;
479 /* For a pointer valued expression EXP compute values M and N such that M
480 divides (EXP - N) and such that N < M. If these numbers can be determined,
481 store M in alignp and N in *BITPOSP and return true. Return false if
482 the results are just a conservative approximation.
484 If EXP is not a pointer, false is returned too. */
486 bool
487 get_pointer_alignment_1 (tree exp, unsigned int *alignp,
488 unsigned HOST_WIDE_INT *bitposp)
490 STRIP_NOPS (exp);
492 if (TREE_CODE (exp) == ADDR_EXPR)
493 return get_object_alignment_2 (TREE_OPERAND (exp, 0),
494 alignp, bitposp, true);
495 else if (TREE_CODE (exp) == SSA_NAME
496 && POINTER_TYPE_P (TREE_TYPE (exp)))
498 unsigned int ptr_align, ptr_misalign;
499 struct ptr_info_def *pi = SSA_NAME_PTR_INFO (exp);
501 if (pi && get_ptr_info_alignment (pi, &ptr_align, &ptr_misalign))
503 *bitposp = ptr_misalign * BITS_PER_UNIT;
504 *alignp = ptr_align * BITS_PER_UNIT;
505 /* We cannot really tell whether this result is an approximation. */
506 return true;
508 else
510 *bitposp = 0;
511 *alignp = BITS_PER_UNIT;
512 return false;
515 else if (TREE_CODE (exp) == INTEGER_CST)
517 *alignp = BIGGEST_ALIGNMENT;
518 *bitposp = ((TREE_INT_CST_LOW (exp) * BITS_PER_UNIT)
519 & (BIGGEST_ALIGNMENT - 1));
520 return true;
523 *bitposp = 0;
524 *alignp = BITS_PER_UNIT;
525 return false;
528 /* Return the alignment in bits of EXP, a pointer valued expression.
529 The alignment returned is, by default, the alignment of the thing that
530 EXP points to. If it is not a POINTER_TYPE, 0 is returned.
532 Otherwise, look at the expression to see if we can do better, i.e., if the
533 expression is actually pointing at an object whose alignment is tighter. */
535 unsigned int
536 get_pointer_alignment (tree exp)
538 unsigned HOST_WIDE_INT bitpos = 0;
539 unsigned int align;
541 get_pointer_alignment_1 (exp, &align, &bitpos);
543 /* align and bitpos now specify known low bits of the pointer.
544 ptr & (align - 1) == bitpos. */
546 if (bitpos != 0)
547 align = (bitpos & -bitpos);
549 return align;
552 /* Compute the length of a C string. TREE_STRING_LENGTH is not the right
553 way, because it could contain a zero byte in the middle.
554 TREE_STRING_LENGTH is the size of the character array, not the string.
556 ONLY_VALUE should be nonzero if the result is not going to be emitted
557 into the instruction stream and zero if it is going to be expanded.
558 E.g. with i++ ? "foo" : "bar", if ONLY_VALUE is nonzero, constant 3
559 is returned, otherwise NULL, since
560 len = c_strlen (src, 1); if (len) expand_expr (len, ...); would not
561 evaluate the side-effects.
563 The value returned is of type `ssizetype'.
565 Unfortunately, string_constant can't access the values of const char
566 arrays with initializers, so neither can we do so here. */
568 tree
569 c_strlen (tree src, int only_value)
571 tree offset_node;
572 HOST_WIDE_INT offset;
573 int max;
574 const char *ptr;
575 location_t loc;
577 STRIP_NOPS (src);
578 if (TREE_CODE (src) == COND_EXPR
579 && (only_value || !TREE_SIDE_EFFECTS (TREE_OPERAND (src, 0))))
581 tree len1, len2;
583 len1 = c_strlen (TREE_OPERAND (src, 1), only_value);
584 len2 = c_strlen (TREE_OPERAND (src, 2), only_value);
585 if (tree_int_cst_equal (len1, len2))
586 return len1;
589 if (TREE_CODE (src) == COMPOUND_EXPR
590 && (only_value || !TREE_SIDE_EFFECTS (TREE_OPERAND (src, 0))))
591 return c_strlen (TREE_OPERAND (src, 1), only_value);
593 loc = EXPR_LOC_OR_HERE (src);
595 src = string_constant (src, &offset_node);
596 if (src == 0)
597 return NULL_TREE;
599 max = TREE_STRING_LENGTH (src) - 1;
600 ptr = TREE_STRING_POINTER (src);
602 if (offset_node && TREE_CODE (offset_node) != INTEGER_CST)
604 /* If the string has an internal zero byte (e.g., "foo\0bar"), we can't
605 compute the offset to the following null if we don't know where to
606 start searching for it. */
607 int i;
609 for (i = 0; i < max; i++)
610 if (ptr[i] == 0)
611 return NULL_TREE;
613 /* We don't know the starting offset, but we do know that the string
614 has no internal zero bytes. We can assume that the offset falls
615 within the bounds of the string; otherwise, the programmer deserves
616 what he gets. Subtract the offset from the length of the string,
617 and return that. This would perhaps not be valid if we were dealing
618 with named arrays in addition to literal string constants. */
620 return size_diffop_loc (loc, size_int (max), offset_node);
623 /* We have a known offset into the string. Start searching there for
624 a null character if we can represent it as a single HOST_WIDE_INT. */
625 if (offset_node == 0)
626 offset = 0;
627 else if (! host_integerp (offset_node, 0))
628 offset = -1;
629 else
630 offset = tree_low_cst (offset_node, 0);
632 /* If the offset is known to be out of bounds, warn, and call strlen at
633 runtime. */
634 if (offset < 0 || offset > max)
636 /* Suppress multiple warnings for propagated constant strings. */
637 if (! TREE_NO_WARNING (src))
639 warning_at (loc, 0, "offset outside bounds of constant string");
640 TREE_NO_WARNING (src) = 1;
642 return NULL_TREE;
645 /* Use strlen to search for the first zero byte. Since any strings
646 constructed with build_string will have nulls appended, we win even
647 if we get handed something like (char[4])"abcd".
649 Since OFFSET is our starting index into the string, no further
650 calculation is needed. */
651 return ssize_int (strlen (ptr + offset));
654 /* Return a char pointer for a C string if it is a string constant
655 or sum of string constant and integer constant. */
657 static const char *
658 c_getstr (tree src)
660 tree offset_node;
662 src = string_constant (src, &offset_node);
663 if (src == 0)
664 return 0;
666 if (offset_node == 0)
667 return TREE_STRING_POINTER (src);
668 else if (!host_integerp (offset_node, 1)
669 || compare_tree_int (offset_node, TREE_STRING_LENGTH (src) - 1) > 0)
670 return 0;
672 return TREE_STRING_POINTER (src) + tree_low_cst (offset_node, 1);
675 /* Return a CONST_INT or CONST_DOUBLE corresponding to target reading
676 GET_MODE_BITSIZE (MODE) bits from string constant STR. */
678 static rtx
679 c_readstr (const char *str, enum machine_mode mode)
681 HOST_WIDE_INT c[2];
682 HOST_WIDE_INT ch;
683 unsigned int i, j;
685 gcc_assert (GET_MODE_CLASS (mode) == MODE_INT);
687 c[0] = 0;
688 c[1] = 0;
689 ch = 1;
690 for (i = 0; i < GET_MODE_SIZE (mode); i++)
692 j = i;
693 if (WORDS_BIG_ENDIAN)
694 j = GET_MODE_SIZE (mode) - i - 1;
695 if (BYTES_BIG_ENDIAN != WORDS_BIG_ENDIAN
696 && GET_MODE_SIZE (mode) >= UNITS_PER_WORD)
697 j = j + UNITS_PER_WORD - 2 * (j % UNITS_PER_WORD) - 1;
698 j *= BITS_PER_UNIT;
699 gcc_assert (j < HOST_BITS_PER_DOUBLE_INT);
701 if (ch)
702 ch = (unsigned char) str[i];
703 c[j / HOST_BITS_PER_WIDE_INT] |= ch << (j % HOST_BITS_PER_WIDE_INT);
705 return immed_double_const (c[0], c[1], mode);
708 /* Cast a target constant CST to target CHAR and if that value fits into
709 host char type, return zero and put that value into variable pointed to by
710 P. */
712 static int
713 target_char_cast (tree cst, char *p)
715 unsigned HOST_WIDE_INT val, hostval;
717 if (TREE_CODE (cst) != INTEGER_CST
718 || CHAR_TYPE_SIZE > HOST_BITS_PER_WIDE_INT)
719 return 1;
721 val = TREE_INT_CST_LOW (cst);
722 if (CHAR_TYPE_SIZE < HOST_BITS_PER_WIDE_INT)
723 val &= (((unsigned HOST_WIDE_INT) 1) << CHAR_TYPE_SIZE) - 1;
725 hostval = val;
726 if (HOST_BITS_PER_CHAR < HOST_BITS_PER_WIDE_INT)
727 hostval &= (((unsigned HOST_WIDE_INT) 1) << HOST_BITS_PER_CHAR) - 1;
729 if (val != hostval)
730 return 1;
732 *p = hostval;
733 return 0;
736 /* Similar to save_expr, but assumes that arbitrary code is not executed
737 in between the multiple evaluations. In particular, we assume that a
738 non-addressable local variable will not be modified. */
740 static tree
741 builtin_save_expr (tree exp)
743 if (TREE_CODE (exp) == SSA_NAME
744 || (TREE_ADDRESSABLE (exp) == 0
745 && (TREE_CODE (exp) == PARM_DECL
746 || (TREE_CODE (exp) == VAR_DECL && !TREE_STATIC (exp)))))
747 return exp;
749 return save_expr (exp);
752 /* Given TEM, a pointer to a stack frame, follow the dynamic chain COUNT
753 times to get the address of either a higher stack frame, or a return
754 address located within it (depending on FNDECL_CODE). */
756 static rtx
757 expand_builtin_return_addr (enum built_in_function fndecl_code, int count)
759 int i;
761 #ifdef INITIAL_FRAME_ADDRESS_RTX
762 rtx tem = INITIAL_FRAME_ADDRESS_RTX;
763 #else
764 rtx tem;
766 /* For a zero count with __builtin_return_address, we don't care what
767 frame address we return, because target-specific definitions will
768 override us. Therefore frame pointer elimination is OK, and using
769 the soft frame pointer is OK.
771 For a nonzero count, or a zero count with __builtin_frame_address,
772 we require a stable offset from the current frame pointer to the
773 previous one, so we must use the hard frame pointer, and
774 we must disable frame pointer elimination. */
775 if (count == 0 && fndecl_code == BUILT_IN_RETURN_ADDRESS)
776 tem = frame_pointer_rtx;
777 else
779 tem = hard_frame_pointer_rtx;
781 /* Tell reload not to eliminate the frame pointer. */
782 crtl->accesses_prior_frames = 1;
784 #endif
786 /* Some machines need special handling before we can access
787 arbitrary frames. For example, on the SPARC, we must first flush
788 all register windows to the stack. */
789 #ifdef SETUP_FRAME_ADDRESSES
790 if (count > 0)
791 SETUP_FRAME_ADDRESSES ();
792 #endif
794 /* On the SPARC, the return address is not in the frame, it is in a
795 register. There is no way to access it off of the current frame
796 pointer, but it can be accessed off the previous frame pointer by
797 reading the value from the register window save area. */
798 #ifdef RETURN_ADDR_IN_PREVIOUS_FRAME
799 if (fndecl_code == BUILT_IN_RETURN_ADDRESS)
800 count--;
801 #endif
803 /* Scan back COUNT frames to the specified frame. */
804 for (i = 0; i < count; i++)
806 /* Assume the dynamic chain pointer is in the word that the
807 frame address points to, unless otherwise specified. */
808 #ifdef DYNAMIC_CHAIN_ADDRESS
809 tem = DYNAMIC_CHAIN_ADDRESS (tem);
810 #endif
811 tem = memory_address (Pmode, tem);
812 tem = gen_frame_mem (Pmode, tem);
813 tem = copy_to_reg (tem);
816 /* For __builtin_frame_address, return what we've got. But, on
817 the SPARC for example, we may have to add a bias. */
818 if (fndecl_code == BUILT_IN_FRAME_ADDRESS)
819 #ifdef FRAME_ADDR_RTX
820 return FRAME_ADDR_RTX (tem);
821 #else
822 return tem;
823 #endif
825 /* For __builtin_return_address, get the return address from that frame. */
826 #ifdef RETURN_ADDR_RTX
827 tem = RETURN_ADDR_RTX (count, tem);
828 #else
829 tem = memory_address (Pmode,
830 plus_constant (Pmode, tem, GET_MODE_SIZE (Pmode)));
831 tem = gen_frame_mem (Pmode, tem);
832 #endif
833 return tem;
836 /* Alias set used for setjmp buffer. */
837 static alias_set_type setjmp_alias_set = -1;
839 /* Construct the leading half of a __builtin_setjmp call. Control will
840 return to RECEIVER_LABEL. This is also called directly by the SJLJ
841 exception handling code. */
843 void
844 expand_builtin_setjmp_setup (rtx buf_addr, rtx receiver_label)
846 enum machine_mode sa_mode = STACK_SAVEAREA_MODE (SAVE_NONLOCAL);
847 rtx stack_save;
848 rtx mem;
850 if (setjmp_alias_set == -1)
851 setjmp_alias_set = new_alias_set ();
853 buf_addr = convert_memory_address (Pmode, buf_addr);
855 buf_addr = force_reg (Pmode, force_operand (buf_addr, NULL_RTX));
857 /* We store the frame pointer and the address of receiver_label in
858 the buffer and use the rest of it for the stack save area, which
859 is machine-dependent. */
861 mem = gen_rtx_MEM (Pmode, buf_addr);
862 set_mem_alias_set (mem, setjmp_alias_set);
863 emit_move_insn (mem, targetm.builtin_setjmp_frame_value ());
865 mem = gen_rtx_MEM (Pmode, plus_constant (Pmode, buf_addr,
866 GET_MODE_SIZE (Pmode))),
867 set_mem_alias_set (mem, setjmp_alias_set);
869 emit_move_insn (validize_mem (mem),
870 force_reg (Pmode, gen_rtx_LABEL_REF (Pmode, receiver_label)));
872 stack_save = gen_rtx_MEM (sa_mode,
873 plus_constant (Pmode, buf_addr,
874 2 * GET_MODE_SIZE (Pmode)));
875 set_mem_alias_set (stack_save, setjmp_alias_set);
876 emit_stack_save (SAVE_NONLOCAL, &stack_save);
878 /* If there is further processing to do, do it. */
879 #ifdef HAVE_builtin_setjmp_setup
880 if (HAVE_builtin_setjmp_setup)
881 emit_insn (gen_builtin_setjmp_setup (buf_addr));
882 #endif
884 /* We have a nonlocal label. */
885 cfun->has_nonlocal_label = 1;
888 /* Construct the trailing part of a __builtin_setjmp call. This is
889 also called directly by the SJLJ exception handling code. */
891 void
892 expand_builtin_setjmp_receiver (rtx receiver_label ATTRIBUTE_UNUSED)
894 rtx chain;
896 /* Clobber the FP when we get here, so we have to make sure it's
897 marked as used by this function. */
898 emit_use (hard_frame_pointer_rtx);
900 /* Mark the static chain as clobbered here so life information
901 doesn't get messed up for it. */
902 chain = targetm.calls.static_chain (current_function_decl, true);
903 if (chain && REG_P (chain))
904 emit_clobber (chain);
906 /* Now put in the code to restore the frame pointer, and argument
907 pointer, if needed. */
908 #ifdef HAVE_nonlocal_goto
909 if (! HAVE_nonlocal_goto)
910 #endif
912 emit_move_insn (virtual_stack_vars_rtx, hard_frame_pointer_rtx);
913 /* This might change the hard frame pointer in ways that aren't
914 apparent to early optimization passes, so force a clobber. */
915 emit_clobber (hard_frame_pointer_rtx);
918 #if !HARD_FRAME_POINTER_IS_ARG_POINTER
919 if (fixed_regs[ARG_POINTER_REGNUM])
921 #ifdef ELIMINABLE_REGS
922 size_t i;
923 static const struct elims {const int from, to;} elim_regs[] = ELIMINABLE_REGS;
925 for (i = 0; i < ARRAY_SIZE (elim_regs); i++)
926 if (elim_regs[i].from == ARG_POINTER_REGNUM
927 && elim_regs[i].to == HARD_FRAME_POINTER_REGNUM)
928 break;
930 if (i == ARRAY_SIZE (elim_regs))
931 #endif
933 /* Now restore our arg pointer from the address at which it
934 was saved in our stack frame. */
935 emit_move_insn (crtl->args.internal_arg_pointer,
936 copy_to_reg (get_arg_pointer_save_area ()));
939 #endif
941 #ifdef HAVE_builtin_setjmp_receiver
942 if (HAVE_builtin_setjmp_receiver)
943 emit_insn (gen_builtin_setjmp_receiver (receiver_label));
944 else
945 #endif
946 #ifdef HAVE_nonlocal_goto_receiver
947 if (HAVE_nonlocal_goto_receiver)
948 emit_insn (gen_nonlocal_goto_receiver ());
949 else
950 #endif
951 { /* Nothing */ }
953 /* We must not allow the code we just generated to be reordered by
954 scheduling. Specifically, the update of the frame pointer must
955 happen immediately, not later. Similarly, we must block
956 (frame-related) register values to be used across this code. */
957 emit_insn (gen_blockage ());
960 /* __builtin_longjmp is passed a pointer to an array of five words (not
961 all will be used on all machines). It operates similarly to the C
962 library function of the same name, but is more efficient. Much of
963 the code below is copied from the handling of non-local gotos. */
965 static void
966 expand_builtin_longjmp (rtx buf_addr, rtx value)
968 rtx fp, lab, stack, insn, last;
969 enum machine_mode sa_mode = STACK_SAVEAREA_MODE (SAVE_NONLOCAL);
971 /* DRAP is needed for stack realign if longjmp is expanded to current
972 function */
973 if (SUPPORTS_STACK_ALIGNMENT)
974 crtl->need_drap = true;
976 if (setjmp_alias_set == -1)
977 setjmp_alias_set = new_alias_set ();
979 buf_addr = convert_memory_address (Pmode, buf_addr);
981 buf_addr = force_reg (Pmode, buf_addr);
983 /* We require that the user must pass a second argument of 1, because
984 that is what builtin_setjmp will return. */
985 gcc_assert (value == const1_rtx);
987 last = get_last_insn ();
988 #ifdef HAVE_builtin_longjmp
989 if (HAVE_builtin_longjmp)
990 emit_insn (gen_builtin_longjmp (buf_addr));
991 else
992 #endif
994 fp = gen_rtx_MEM (Pmode, buf_addr);
995 lab = gen_rtx_MEM (Pmode, plus_constant (Pmode, buf_addr,
996 GET_MODE_SIZE (Pmode)));
998 stack = gen_rtx_MEM (sa_mode, plus_constant (Pmode, buf_addr,
999 2 * GET_MODE_SIZE (Pmode)));
1000 set_mem_alias_set (fp, setjmp_alias_set);
1001 set_mem_alias_set (lab, setjmp_alias_set);
1002 set_mem_alias_set (stack, setjmp_alias_set);
1004 /* Pick up FP, label, and SP from the block and jump. This code is
1005 from expand_goto in stmt.c; see there for detailed comments. */
1006 #ifdef HAVE_nonlocal_goto
1007 if (HAVE_nonlocal_goto)
1008 /* We have to pass a value to the nonlocal_goto pattern that will
1009 get copied into the static_chain pointer, but it does not matter
1010 what that value is, because builtin_setjmp does not use it. */
1011 emit_insn (gen_nonlocal_goto (value, lab, stack, fp));
1012 else
1013 #endif
1015 lab = copy_to_reg (lab);
1017 emit_clobber (gen_rtx_MEM (BLKmode, gen_rtx_SCRATCH (VOIDmode)));
1018 emit_clobber (gen_rtx_MEM (BLKmode, hard_frame_pointer_rtx));
1020 emit_move_insn (hard_frame_pointer_rtx, fp);
1021 emit_stack_restore (SAVE_NONLOCAL, stack);
1023 emit_use (hard_frame_pointer_rtx);
1024 emit_use (stack_pointer_rtx);
1025 emit_indirect_jump (lab);
1029 /* Search backwards and mark the jump insn as a non-local goto.
1030 Note that this precludes the use of __builtin_longjmp to a
1031 __builtin_setjmp target in the same function. However, we've
1032 already cautioned the user that these functions are for
1033 internal exception handling use only. */
1034 for (insn = get_last_insn (); insn; insn = PREV_INSN (insn))
1036 gcc_assert (insn != last);
1038 if (JUMP_P (insn))
1040 add_reg_note (insn, REG_NON_LOCAL_GOTO, const0_rtx);
1041 break;
1043 else if (CALL_P (insn))
1044 break;
1048 /* Expand a call to __builtin_nonlocal_goto. We're passed the target label
1049 and the address of the save area. */
1051 static rtx
1052 expand_builtin_nonlocal_goto (tree exp)
1054 tree t_label, t_save_area;
1055 rtx r_label, r_save_area, r_fp, r_sp, insn;
1057 if (!validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
1058 return NULL_RTX;
1060 t_label = CALL_EXPR_ARG (exp, 0);
1061 t_save_area = CALL_EXPR_ARG (exp, 1);
1063 r_label = expand_normal (t_label);
1064 r_label = convert_memory_address (Pmode, r_label);
1065 r_save_area = expand_normal (t_save_area);
1066 r_save_area = convert_memory_address (Pmode, r_save_area);
1067 /* Copy the address of the save location to a register just in case it was
1068 based on the frame pointer. */
1069 r_save_area = copy_to_reg (r_save_area);
1070 r_fp = gen_rtx_MEM (Pmode, r_save_area);
1071 r_sp = gen_rtx_MEM (STACK_SAVEAREA_MODE (SAVE_NONLOCAL),
1072 plus_constant (Pmode, r_save_area,
1073 GET_MODE_SIZE (Pmode)));
1075 crtl->has_nonlocal_goto = 1;
1077 #ifdef HAVE_nonlocal_goto
1078 /* ??? We no longer need to pass the static chain value, afaik. */
1079 if (HAVE_nonlocal_goto)
1080 emit_insn (gen_nonlocal_goto (const0_rtx, r_label, r_sp, r_fp));
1081 else
1082 #endif
1084 r_label = copy_to_reg (r_label);
1086 emit_clobber (gen_rtx_MEM (BLKmode, gen_rtx_SCRATCH (VOIDmode)));
1087 emit_clobber (gen_rtx_MEM (BLKmode, hard_frame_pointer_rtx));
1089 /* Restore frame pointer for containing function. */
1090 emit_move_insn (hard_frame_pointer_rtx, r_fp);
1091 emit_stack_restore (SAVE_NONLOCAL, r_sp);
1093 /* USE of hard_frame_pointer_rtx added for consistency;
1094 not clear if really needed. */
1095 emit_use (hard_frame_pointer_rtx);
1096 emit_use (stack_pointer_rtx);
1098 /* If the architecture is using a GP register, we must
1099 conservatively assume that the target function makes use of it.
1100 The prologue of functions with nonlocal gotos must therefore
1101 initialize the GP register to the appropriate value, and we
1102 must then make sure that this value is live at the point
1103 of the jump. (Note that this doesn't necessarily apply
1104 to targets with a nonlocal_goto pattern; they are free
1105 to implement it in their own way. Note also that this is
1106 a no-op if the GP register is a global invariant.) */
1107 if ((unsigned) PIC_OFFSET_TABLE_REGNUM != INVALID_REGNUM
1108 && fixed_regs[PIC_OFFSET_TABLE_REGNUM])
1109 emit_use (pic_offset_table_rtx);
1111 emit_indirect_jump (r_label);
1114 /* Search backwards to the jump insn and mark it as a
1115 non-local goto. */
1116 for (insn = get_last_insn (); insn; insn = PREV_INSN (insn))
1118 if (JUMP_P (insn))
1120 add_reg_note (insn, REG_NON_LOCAL_GOTO, const0_rtx);
1121 break;
1123 else if (CALL_P (insn))
1124 break;
1127 return const0_rtx;
1130 /* __builtin_update_setjmp_buf is passed a pointer to an array of five words
1131 (not all will be used on all machines) that was passed to __builtin_setjmp.
1132 It updates the stack pointer in that block to correspond to the current
1133 stack pointer. */
1135 static void
1136 expand_builtin_update_setjmp_buf (rtx buf_addr)
1138 enum machine_mode sa_mode = STACK_SAVEAREA_MODE (SAVE_NONLOCAL);
1139 rtx stack_save
1140 = gen_rtx_MEM (sa_mode,
1141 memory_address
1142 (sa_mode,
1143 plus_constant (Pmode, buf_addr,
1144 2 * GET_MODE_SIZE (Pmode))));
1146 emit_stack_save (SAVE_NONLOCAL, &stack_save);
1149 /* Expand a call to __builtin_prefetch. For a target that does not support
1150 data prefetch, evaluate the memory address argument in case it has side
1151 effects. */
1153 static void
1154 expand_builtin_prefetch (tree exp)
1156 tree arg0, arg1, arg2;
1157 int nargs;
1158 rtx op0, op1, op2;
1160 if (!validate_arglist (exp, POINTER_TYPE, 0))
1161 return;
1163 arg0 = CALL_EXPR_ARG (exp, 0);
1165 /* Arguments 1 and 2 are optional; argument 1 (read/write) defaults to
1166 zero (read) and argument 2 (locality) defaults to 3 (high degree of
1167 locality). */
1168 nargs = call_expr_nargs (exp);
1169 if (nargs > 1)
1170 arg1 = CALL_EXPR_ARG (exp, 1);
1171 else
1172 arg1 = integer_zero_node;
1173 if (nargs > 2)
1174 arg2 = CALL_EXPR_ARG (exp, 2);
1175 else
1176 arg2 = integer_three_node;
1178 /* Argument 0 is an address. */
1179 op0 = expand_expr (arg0, NULL_RTX, Pmode, EXPAND_NORMAL);
1181 /* Argument 1 (read/write flag) must be a compile-time constant int. */
1182 if (TREE_CODE (arg1) != INTEGER_CST)
1184 error ("second argument to %<__builtin_prefetch%> must be a constant");
1185 arg1 = integer_zero_node;
1187 op1 = expand_normal (arg1);
1188 /* Argument 1 must be either zero or one. */
1189 if (INTVAL (op1) != 0 && INTVAL (op1) != 1)
1191 warning (0, "invalid second argument to %<__builtin_prefetch%>;"
1192 " using zero");
1193 op1 = const0_rtx;
1196 /* Argument 2 (locality) must be a compile-time constant int. */
1197 if (TREE_CODE (arg2) != INTEGER_CST)
1199 error ("third argument to %<__builtin_prefetch%> must be a constant");
1200 arg2 = integer_zero_node;
1202 op2 = expand_normal (arg2);
1203 /* Argument 2 must be 0, 1, 2, or 3. */
1204 if (INTVAL (op2) < 0 || INTVAL (op2) > 3)
1206 warning (0, "invalid third argument to %<__builtin_prefetch%>; using zero");
1207 op2 = const0_rtx;
1210 #ifdef HAVE_prefetch
1211 if (HAVE_prefetch)
1213 struct expand_operand ops[3];
1215 create_address_operand (&ops[0], op0);
1216 create_integer_operand (&ops[1], INTVAL (op1));
1217 create_integer_operand (&ops[2], INTVAL (op2));
1218 if (maybe_expand_insn (CODE_FOR_prefetch, 3, ops))
1219 return;
1221 #endif
1223 /* Don't do anything with direct references to volatile memory, but
1224 generate code to handle other side effects. */
1225 if (!MEM_P (op0) && side_effects_p (op0))
1226 emit_insn (op0);
1229 /* Get a MEM rtx for expression EXP which is the address of an operand
1230 to be used in a string instruction (cmpstrsi, movmemsi, ..). LEN is
1231 the maximum length of the block of memory that might be accessed or
1232 NULL if unknown. */
1234 static rtx
1235 get_memory_rtx (tree exp, tree len)
1237 tree orig_exp = exp;
1238 rtx addr, mem;
1240 /* When EXP is not resolved SAVE_EXPR, MEM_ATTRS can be still derived
1241 from its expression, for expr->a.b only <variable>.a.b is recorded. */
1242 if (TREE_CODE (exp) == SAVE_EXPR && !SAVE_EXPR_RESOLVED_P (exp))
1243 exp = TREE_OPERAND (exp, 0);
1245 addr = expand_expr (orig_exp, NULL_RTX, ptr_mode, EXPAND_NORMAL);
1246 mem = gen_rtx_MEM (BLKmode, memory_address (BLKmode, addr));
1248 /* Get an expression we can use to find the attributes to assign to MEM.
1249 First remove any nops. */
1250 while (CONVERT_EXPR_P (exp)
1251 && POINTER_TYPE_P (TREE_TYPE (TREE_OPERAND (exp, 0))))
1252 exp = TREE_OPERAND (exp, 0);
1254 /* Build a MEM_REF representing the whole accessed area as a byte blob,
1255 (as builtin stringops may alias with anything). */
1256 exp = fold_build2 (MEM_REF,
1257 build_array_type (char_type_node,
1258 build_range_type (sizetype,
1259 size_one_node, len)),
1260 exp, build_int_cst (ptr_type_node, 0));
1262 /* If the MEM_REF has no acceptable address, try to get the base object
1263 from the original address we got, and build an all-aliasing
1264 unknown-sized access to that one. */
1265 if (is_gimple_mem_ref_addr (TREE_OPERAND (exp, 0)))
1266 set_mem_attributes (mem, exp, 0);
1267 else if (TREE_CODE (TREE_OPERAND (exp, 0)) == ADDR_EXPR
1268 && (exp = get_base_address (TREE_OPERAND (TREE_OPERAND (exp, 0),
1269 0))))
1271 exp = build_fold_addr_expr (exp);
1272 exp = fold_build2 (MEM_REF,
1273 build_array_type (char_type_node,
1274 build_range_type (sizetype,
1275 size_zero_node,
1276 NULL)),
1277 exp, build_int_cst (ptr_type_node, 0));
1278 set_mem_attributes (mem, exp, 0);
1280 set_mem_alias_set (mem, 0);
1281 return mem;
1284 /* Built-in functions to perform an untyped call and return. */
1286 #define apply_args_mode \
1287 (this_target_builtins->x_apply_args_mode)
1288 #define apply_result_mode \
1289 (this_target_builtins->x_apply_result_mode)
1291 /* Return the size required for the block returned by __builtin_apply_args,
1292 and initialize apply_args_mode. */
1294 static int
1295 apply_args_size (void)
1297 static int size = -1;
1298 int align;
1299 unsigned int regno;
1300 enum machine_mode mode;
1302 /* The values computed by this function never change. */
1303 if (size < 0)
1305 /* The first value is the incoming arg-pointer. */
1306 size = GET_MODE_SIZE (Pmode);
1308 /* The second value is the structure value address unless this is
1309 passed as an "invisible" first argument. */
1310 if (targetm.calls.struct_value_rtx (cfun ? TREE_TYPE (cfun->decl) : 0, 0))
1311 size += GET_MODE_SIZE (Pmode);
1313 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1314 if (FUNCTION_ARG_REGNO_P (regno))
1316 mode = targetm.calls.get_raw_arg_mode (regno);
1318 gcc_assert (mode != VOIDmode);
1320 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1321 if (size % align != 0)
1322 size = CEIL (size, align) * align;
1323 size += GET_MODE_SIZE (mode);
1324 apply_args_mode[regno] = mode;
1326 else
1328 apply_args_mode[regno] = VOIDmode;
1331 return size;
1334 /* Return the size required for the block returned by __builtin_apply,
1335 and initialize apply_result_mode. */
1337 static int
1338 apply_result_size (void)
1340 static int size = -1;
1341 int align, regno;
1342 enum machine_mode mode;
1344 /* The values computed by this function never change. */
1345 if (size < 0)
1347 size = 0;
1349 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1350 if (targetm.calls.function_value_regno_p (regno))
1352 mode = targetm.calls.get_raw_result_mode (regno);
1354 gcc_assert (mode != VOIDmode);
1356 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1357 if (size % align != 0)
1358 size = CEIL (size, align) * align;
1359 size += GET_MODE_SIZE (mode);
1360 apply_result_mode[regno] = mode;
1362 else
1363 apply_result_mode[regno] = VOIDmode;
1365 /* Allow targets that use untyped_call and untyped_return to override
1366 the size so that machine-specific information can be stored here. */
1367 #ifdef APPLY_RESULT_SIZE
1368 size = APPLY_RESULT_SIZE;
1369 #endif
1371 return size;
1374 #if defined (HAVE_untyped_call) || defined (HAVE_untyped_return)
1375 /* Create a vector describing the result block RESULT. If SAVEP is true,
1376 the result block is used to save the values; otherwise it is used to
1377 restore the values. */
1379 static rtx
1380 result_vector (int savep, rtx result)
1382 int regno, size, align, nelts;
1383 enum machine_mode mode;
1384 rtx reg, mem;
1385 rtx *savevec = XALLOCAVEC (rtx, FIRST_PSEUDO_REGISTER);
1387 size = nelts = 0;
1388 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1389 if ((mode = apply_result_mode[regno]) != VOIDmode)
1391 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1392 if (size % align != 0)
1393 size = CEIL (size, align) * align;
1394 reg = gen_rtx_REG (mode, savep ? regno : INCOMING_REGNO (regno));
1395 mem = adjust_address (result, mode, size);
1396 savevec[nelts++] = (savep
1397 ? gen_rtx_SET (VOIDmode, mem, reg)
1398 : gen_rtx_SET (VOIDmode, reg, mem));
1399 size += GET_MODE_SIZE (mode);
1401 return gen_rtx_PARALLEL (VOIDmode, gen_rtvec_v (nelts, savevec));
1403 #endif /* HAVE_untyped_call or HAVE_untyped_return */
1405 /* Save the state required to perform an untyped call with the same
1406 arguments as were passed to the current function. */
1408 static rtx
1409 expand_builtin_apply_args_1 (void)
1411 rtx registers, tem;
1412 int size, align, regno;
1413 enum machine_mode mode;
1414 rtx struct_incoming_value = targetm.calls.struct_value_rtx (cfun ? TREE_TYPE (cfun->decl) : 0, 1);
1416 /* Create a block where the arg-pointer, structure value address,
1417 and argument registers can be saved. */
1418 registers = assign_stack_local (BLKmode, apply_args_size (), -1);
1420 /* Walk past the arg-pointer and structure value address. */
1421 size = GET_MODE_SIZE (Pmode);
1422 if (targetm.calls.struct_value_rtx (cfun ? TREE_TYPE (cfun->decl) : 0, 0))
1423 size += GET_MODE_SIZE (Pmode);
1425 /* Save each register used in calling a function to the block. */
1426 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1427 if ((mode = apply_args_mode[regno]) != VOIDmode)
1429 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1430 if (size % align != 0)
1431 size = CEIL (size, align) * align;
1433 tem = gen_rtx_REG (mode, INCOMING_REGNO (regno));
1435 emit_move_insn (adjust_address (registers, mode, size), tem);
1436 size += GET_MODE_SIZE (mode);
1439 /* Save the arg pointer to the block. */
1440 tem = copy_to_reg (crtl->args.internal_arg_pointer);
1441 #ifdef STACK_GROWS_DOWNWARD
1442 /* We need the pointer as the caller actually passed them to us, not
1443 as we might have pretended they were passed. Make sure it's a valid
1444 operand, as emit_move_insn isn't expected to handle a PLUS. */
1446 = force_operand (plus_constant (Pmode, tem, crtl->args.pretend_args_size),
1447 NULL_RTX);
1448 #endif
1449 emit_move_insn (adjust_address (registers, Pmode, 0), tem);
1451 size = GET_MODE_SIZE (Pmode);
1453 /* Save the structure value address unless this is passed as an
1454 "invisible" first argument. */
1455 if (struct_incoming_value)
1457 emit_move_insn (adjust_address (registers, Pmode, size),
1458 copy_to_reg (struct_incoming_value));
1459 size += GET_MODE_SIZE (Pmode);
1462 /* Return the address of the block. */
1463 return copy_addr_to_reg (XEXP (registers, 0));
1466 /* __builtin_apply_args returns block of memory allocated on
1467 the stack into which is stored the arg pointer, structure
1468 value address, static chain, and all the registers that might
1469 possibly be used in performing a function call. The code is
1470 moved to the start of the function so the incoming values are
1471 saved. */
1473 static rtx
1474 expand_builtin_apply_args (void)
1476 /* Don't do __builtin_apply_args more than once in a function.
1477 Save the result of the first call and reuse it. */
1478 if (apply_args_value != 0)
1479 return apply_args_value;
1481 /* When this function is called, it means that registers must be
1482 saved on entry to this function. So we migrate the
1483 call to the first insn of this function. */
1484 rtx temp;
1485 rtx seq;
1487 start_sequence ();
1488 temp = expand_builtin_apply_args_1 ();
1489 seq = get_insns ();
1490 end_sequence ();
1492 apply_args_value = temp;
1494 /* Put the insns after the NOTE that starts the function.
1495 If this is inside a start_sequence, make the outer-level insn
1496 chain current, so the code is placed at the start of the
1497 function. If internal_arg_pointer is a non-virtual pseudo,
1498 it needs to be placed after the function that initializes
1499 that pseudo. */
1500 push_topmost_sequence ();
1501 if (REG_P (crtl->args.internal_arg_pointer)
1502 && REGNO (crtl->args.internal_arg_pointer) > LAST_VIRTUAL_REGISTER)
1503 emit_insn_before (seq, parm_birth_insn);
1504 else
1505 emit_insn_before (seq, NEXT_INSN (entry_of_function ()));
1506 pop_topmost_sequence ();
1507 return temp;
1511 /* Perform an untyped call and save the state required to perform an
1512 untyped return of whatever value was returned by the given function. */
1514 static rtx
1515 expand_builtin_apply (rtx function, rtx arguments, rtx argsize)
1517 int size, align, regno;
1518 enum machine_mode mode;
1519 rtx incoming_args, result, reg, dest, src, call_insn;
1520 rtx old_stack_level = 0;
1521 rtx call_fusage = 0;
1522 rtx struct_value = targetm.calls.struct_value_rtx (cfun ? TREE_TYPE (cfun->decl) : 0, 0);
1524 arguments = convert_memory_address (Pmode, arguments);
1526 /* Create a block where the return registers can be saved. */
1527 result = assign_stack_local (BLKmode, apply_result_size (), -1);
1529 /* Fetch the arg pointer from the ARGUMENTS block. */
1530 incoming_args = gen_reg_rtx (Pmode);
1531 emit_move_insn (incoming_args, gen_rtx_MEM (Pmode, arguments));
1532 #ifndef STACK_GROWS_DOWNWARD
1533 incoming_args = expand_simple_binop (Pmode, MINUS, incoming_args, argsize,
1534 incoming_args, 0, OPTAB_LIB_WIDEN);
1535 #endif
1537 /* Push a new argument block and copy the arguments. Do not allow
1538 the (potential) memcpy call below to interfere with our stack
1539 manipulations. */
1540 do_pending_stack_adjust ();
1541 NO_DEFER_POP;
1543 /* Save the stack with nonlocal if available. */
1544 #ifdef HAVE_save_stack_nonlocal
1545 if (HAVE_save_stack_nonlocal)
1546 emit_stack_save (SAVE_NONLOCAL, &old_stack_level);
1547 else
1548 #endif
1549 emit_stack_save (SAVE_BLOCK, &old_stack_level);
1551 /* Allocate a block of memory onto the stack and copy the memory
1552 arguments to the outgoing arguments address. We can pass TRUE
1553 as the 4th argument because we just saved the stack pointer
1554 and will restore it right after the call. */
1555 allocate_dynamic_stack_space (argsize, 0, BIGGEST_ALIGNMENT, true);
1557 /* Set DRAP flag to true, even though allocate_dynamic_stack_space
1558 may have already set current_function_calls_alloca to true.
1559 current_function_calls_alloca won't be set if argsize is zero,
1560 so we have to guarantee need_drap is true here. */
1561 if (SUPPORTS_STACK_ALIGNMENT)
1562 crtl->need_drap = true;
1564 dest = virtual_outgoing_args_rtx;
1565 #ifndef STACK_GROWS_DOWNWARD
1566 if (CONST_INT_P (argsize))
1567 dest = plus_constant (Pmode, dest, -INTVAL (argsize));
1568 else
1569 dest = gen_rtx_PLUS (Pmode, dest, negate_rtx (Pmode, argsize));
1570 #endif
1571 dest = gen_rtx_MEM (BLKmode, dest);
1572 set_mem_align (dest, PARM_BOUNDARY);
1573 src = gen_rtx_MEM (BLKmode, incoming_args);
1574 set_mem_align (src, PARM_BOUNDARY);
1575 emit_block_move (dest, src, argsize, BLOCK_OP_NORMAL);
1577 /* Refer to the argument block. */
1578 apply_args_size ();
1579 arguments = gen_rtx_MEM (BLKmode, arguments);
1580 set_mem_align (arguments, PARM_BOUNDARY);
1582 /* Walk past the arg-pointer and structure value address. */
1583 size = GET_MODE_SIZE (Pmode);
1584 if (struct_value)
1585 size += GET_MODE_SIZE (Pmode);
1587 /* Restore each of the registers previously saved. Make USE insns
1588 for each of these registers for use in making the call. */
1589 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1590 if ((mode = apply_args_mode[regno]) != VOIDmode)
1592 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1593 if (size % align != 0)
1594 size = CEIL (size, align) * align;
1595 reg = gen_rtx_REG (mode, regno);
1596 emit_move_insn (reg, adjust_address (arguments, mode, size));
1597 use_reg (&call_fusage, reg);
1598 size += GET_MODE_SIZE (mode);
1601 /* Restore the structure value address unless this is passed as an
1602 "invisible" first argument. */
1603 size = GET_MODE_SIZE (Pmode);
1604 if (struct_value)
1606 rtx value = gen_reg_rtx (Pmode);
1607 emit_move_insn (value, adjust_address (arguments, Pmode, size));
1608 emit_move_insn (struct_value, value);
1609 if (REG_P (struct_value))
1610 use_reg (&call_fusage, struct_value);
1611 size += GET_MODE_SIZE (Pmode);
1614 /* All arguments and registers used for the call are set up by now! */
1615 function = prepare_call_address (NULL, function, NULL, &call_fusage, 0, 0);
1617 /* Ensure address is valid. SYMBOL_REF is already valid, so no need,
1618 and we don't want to load it into a register as an optimization,
1619 because prepare_call_address already did it if it should be done. */
1620 if (GET_CODE (function) != SYMBOL_REF)
1621 function = memory_address (FUNCTION_MODE, function);
1623 /* Generate the actual call instruction and save the return value. */
1624 #ifdef HAVE_untyped_call
1625 if (HAVE_untyped_call)
1626 emit_call_insn (gen_untyped_call (gen_rtx_MEM (FUNCTION_MODE, function),
1627 result, result_vector (1, result)));
1628 else
1629 #endif
1630 #ifdef HAVE_call_value
1631 if (HAVE_call_value)
1633 rtx valreg = 0;
1635 /* Locate the unique return register. It is not possible to
1636 express a call that sets more than one return register using
1637 call_value; use untyped_call for that. In fact, untyped_call
1638 only needs to save the return registers in the given block. */
1639 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1640 if ((mode = apply_result_mode[regno]) != VOIDmode)
1642 gcc_assert (!valreg); /* HAVE_untyped_call required. */
1644 valreg = gen_rtx_REG (mode, regno);
1647 emit_call_insn (GEN_CALL_VALUE (valreg,
1648 gen_rtx_MEM (FUNCTION_MODE, function),
1649 const0_rtx, NULL_RTX, const0_rtx));
1651 emit_move_insn (adjust_address (result, GET_MODE (valreg), 0), valreg);
1653 else
1654 #endif
1655 gcc_unreachable ();
1657 /* Find the CALL insn we just emitted, and attach the register usage
1658 information. */
1659 call_insn = last_call_insn ();
1660 add_function_usage_to (call_insn, call_fusage);
1662 /* Restore the stack. */
1663 #ifdef HAVE_save_stack_nonlocal
1664 if (HAVE_save_stack_nonlocal)
1665 emit_stack_restore (SAVE_NONLOCAL, old_stack_level);
1666 else
1667 #endif
1668 emit_stack_restore (SAVE_BLOCK, old_stack_level);
1669 fixup_args_size_notes (call_insn, get_last_insn(), 0);
1671 OK_DEFER_POP;
1673 /* Return the address of the result block. */
1674 result = copy_addr_to_reg (XEXP (result, 0));
1675 return convert_memory_address (ptr_mode, result);
1678 /* Perform an untyped return. */
1680 static void
1681 expand_builtin_return (rtx result)
1683 int size, align, regno;
1684 enum machine_mode mode;
1685 rtx reg;
1686 rtx call_fusage = 0;
1688 result = convert_memory_address (Pmode, result);
1690 apply_result_size ();
1691 result = gen_rtx_MEM (BLKmode, result);
1693 #ifdef HAVE_untyped_return
1694 if (HAVE_untyped_return)
1696 emit_jump_insn (gen_untyped_return (result, result_vector (0, result)));
1697 emit_barrier ();
1698 return;
1700 #endif
1702 /* Restore the return value and note that each value is used. */
1703 size = 0;
1704 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1705 if ((mode = apply_result_mode[regno]) != VOIDmode)
1707 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1708 if (size % align != 0)
1709 size = CEIL (size, align) * align;
1710 reg = gen_rtx_REG (mode, INCOMING_REGNO (regno));
1711 emit_move_insn (reg, adjust_address (result, mode, size));
1713 push_to_sequence (call_fusage);
1714 emit_use (reg);
1715 call_fusage = get_insns ();
1716 end_sequence ();
1717 size += GET_MODE_SIZE (mode);
1720 /* Put the USE insns before the return. */
1721 emit_insn (call_fusage);
1723 /* Return whatever values was restored by jumping directly to the end
1724 of the function. */
1725 expand_naked_return ();
1728 /* Used by expand_builtin_classify_type and fold_builtin_classify_type. */
1730 static enum type_class
1731 type_to_class (tree type)
1733 switch (TREE_CODE (type))
1735 case VOID_TYPE: return void_type_class;
1736 case INTEGER_TYPE: return integer_type_class;
1737 case ENUMERAL_TYPE: return enumeral_type_class;
1738 case BOOLEAN_TYPE: return boolean_type_class;
1739 case POINTER_TYPE: return pointer_type_class;
1740 case REFERENCE_TYPE: return reference_type_class;
1741 case OFFSET_TYPE: return offset_type_class;
1742 case REAL_TYPE: return real_type_class;
1743 case COMPLEX_TYPE: return complex_type_class;
1744 case FUNCTION_TYPE: return function_type_class;
1745 case METHOD_TYPE: return method_type_class;
1746 case RECORD_TYPE: return record_type_class;
1747 case UNION_TYPE:
1748 case QUAL_UNION_TYPE: return union_type_class;
1749 case ARRAY_TYPE: return (TYPE_STRING_FLAG (type)
1750 ? string_type_class : array_type_class);
1751 case LANG_TYPE: return lang_type_class;
1752 default: return no_type_class;
1756 /* Expand a call EXP to __builtin_classify_type. */
1758 static rtx
1759 expand_builtin_classify_type (tree exp)
1761 if (call_expr_nargs (exp))
1762 return GEN_INT (type_to_class (TREE_TYPE (CALL_EXPR_ARG (exp, 0))));
1763 return GEN_INT (no_type_class);
1766 /* This helper macro, meant to be used in mathfn_built_in below,
1767 determines which among a set of three builtin math functions is
1768 appropriate for a given type mode. The `F' and `L' cases are
1769 automatically generated from the `double' case. */
1770 #define CASE_MATHFN(BUILT_IN_MATHFN) \
1771 case BUILT_IN_MATHFN: case BUILT_IN_MATHFN##F: case BUILT_IN_MATHFN##L: \
1772 fcode = BUILT_IN_MATHFN; fcodef = BUILT_IN_MATHFN##F ; \
1773 fcodel = BUILT_IN_MATHFN##L ; break;
1774 /* Similar to above, but appends _R after any F/L suffix. */
1775 #define CASE_MATHFN_REENT(BUILT_IN_MATHFN) \
1776 case BUILT_IN_MATHFN##_R: case BUILT_IN_MATHFN##F_R: case BUILT_IN_MATHFN##L_R: \
1777 fcode = BUILT_IN_MATHFN##_R; fcodef = BUILT_IN_MATHFN##F_R ; \
1778 fcodel = BUILT_IN_MATHFN##L_R ; break;
1780 /* Return mathematic function equivalent to FN but operating directly on TYPE,
1781 if available. If IMPLICIT is true use the implicit builtin declaration,
1782 otherwise use the explicit declaration. If we can't do the conversion,
1783 return zero. */
1785 static tree
1786 mathfn_built_in_1 (tree type, enum built_in_function fn, bool implicit_p)
1788 enum built_in_function fcode, fcodef, fcodel, fcode2;
1790 switch (fn)
1792 CASE_MATHFN (BUILT_IN_ACOS)
1793 CASE_MATHFN (BUILT_IN_ACOSH)
1794 CASE_MATHFN (BUILT_IN_ASIN)
1795 CASE_MATHFN (BUILT_IN_ASINH)
1796 CASE_MATHFN (BUILT_IN_ATAN)
1797 CASE_MATHFN (BUILT_IN_ATAN2)
1798 CASE_MATHFN (BUILT_IN_ATANH)
1799 CASE_MATHFN (BUILT_IN_CBRT)
1800 CASE_MATHFN (BUILT_IN_CEIL)
1801 CASE_MATHFN (BUILT_IN_CEXPI)
1802 CASE_MATHFN (BUILT_IN_COPYSIGN)
1803 CASE_MATHFN (BUILT_IN_COS)
1804 CASE_MATHFN (BUILT_IN_COSH)
1805 CASE_MATHFN (BUILT_IN_DREM)
1806 CASE_MATHFN (BUILT_IN_ERF)
1807 CASE_MATHFN (BUILT_IN_ERFC)
1808 CASE_MATHFN (BUILT_IN_EXP)
1809 CASE_MATHFN (BUILT_IN_EXP10)
1810 CASE_MATHFN (BUILT_IN_EXP2)
1811 CASE_MATHFN (BUILT_IN_EXPM1)
1812 CASE_MATHFN (BUILT_IN_FABS)
1813 CASE_MATHFN (BUILT_IN_FDIM)
1814 CASE_MATHFN (BUILT_IN_FLOOR)
1815 CASE_MATHFN (BUILT_IN_FMA)
1816 CASE_MATHFN (BUILT_IN_FMAX)
1817 CASE_MATHFN (BUILT_IN_FMIN)
1818 CASE_MATHFN (BUILT_IN_FMOD)
1819 CASE_MATHFN (BUILT_IN_FREXP)
1820 CASE_MATHFN (BUILT_IN_GAMMA)
1821 CASE_MATHFN_REENT (BUILT_IN_GAMMA) /* GAMMA_R */
1822 CASE_MATHFN (BUILT_IN_HUGE_VAL)
1823 CASE_MATHFN (BUILT_IN_HYPOT)
1824 CASE_MATHFN (BUILT_IN_ILOGB)
1825 CASE_MATHFN (BUILT_IN_ICEIL)
1826 CASE_MATHFN (BUILT_IN_IFLOOR)
1827 CASE_MATHFN (BUILT_IN_INF)
1828 CASE_MATHFN (BUILT_IN_IRINT)
1829 CASE_MATHFN (BUILT_IN_IROUND)
1830 CASE_MATHFN (BUILT_IN_ISINF)
1831 CASE_MATHFN (BUILT_IN_J0)
1832 CASE_MATHFN (BUILT_IN_J1)
1833 CASE_MATHFN (BUILT_IN_JN)
1834 CASE_MATHFN (BUILT_IN_LCEIL)
1835 CASE_MATHFN (BUILT_IN_LDEXP)
1836 CASE_MATHFN (BUILT_IN_LFLOOR)
1837 CASE_MATHFN (BUILT_IN_LGAMMA)
1838 CASE_MATHFN_REENT (BUILT_IN_LGAMMA) /* LGAMMA_R */
1839 CASE_MATHFN (BUILT_IN_LLCEIL)
1840 CASE_MATHFN (BUILT_IN_LLFLOOR)
1841 CASE_MATHFN (BUILT_IN_LLRINT)
1842 CASE_MATHFN (BUILT_IN_LLROUND)
1843 CASE_MATHFN (BUILT_IN_LOG)
1844 CASE_MATHFN (BUILT_IN_LOG10)
1845 CASE_MATHFN (BUILT_IN_LOG1P)
1846 CASE_MATHFN (BUILT_IN_LOG2)
1847 CASE_MATHFN (BUILT_IN_LOGB)
1848 CASE_MATHFN (BUILT_IN_LRINT)
1849 CASE_MATHFN (BUILT_IN_LROUND)
1850 CASE_MATHFN (BUILT_IN_MODF)
1851 CASE_MATHFN (BUILT_IN_NAN)
1852 CASE_MATHFN (BUILT_IN_NANS)
1853 CASE_MATHFN (BUILT_IN_NEARBYINT)
1854 CASE_MATHFN (BUILT_IN_NEXTAFTER)
1855 CASE_MATHFN (BUILT_IN_NEXTTOWARD)
1856 CASE_MATHFN (BUILT_IN_POW)
1857 CASE_MATHFN (BUILT_IN_POWI)
1858 CASE_MATHFN (BUILT_IN_POW10)
1859 CASE_MATHFN (BUILT_IN_REMAINDER)
1860 CASE_MATHFN (BUILT_IN_REMQUO)
1861 CASE_MATHFN (BUILT_IN_RINT)
1862 CASE_MATHFN (BUILT_IN_ROUND)
1863 CASE_MATHFN (BUILT_IN_SCALB)
1864 CASE_MATHFN (BUILT_IN_SCALBLN)
1865 CASE_MATHFN (BUILT_IN_SCALBN)
1866 CASE_MATHFN (BUILT_IN_SIGNBIT)
1867 CASE_MATHFN (BUILT_IN_SIGNIFICAND)
1868 CASE_MATHFN (BUILT_IN_SIN)
1869 CASE_MATHFN (BUILT_IN_SINCOS)
1870 CASE_MATHFN (BUILT_IN_SINH)
1871 CASE_MATHFN (BUILT_IN_SQRT)
1872 CASE_MATHFN (BUILT_IN_TAN)
1873 CASE_MATHFN (BUILT_IN_TANH)
1874 CASE_MATHFN (BUILT_IN_TGAMMA)
1875 CASE_MATHFN (BUILT_IN_TRUNC)
1876 CASE_MATHFN (BUILT_IN_Y0)
1877 CASE_MATHFN (BUILT_IN_Y1)
1878 CASE_MATHFN (BUILT_IN_YN)
1880 default:
1881 return NULL_TREE;
1884 if (TYPE_MAIN_VARIANT (type) == double_type_node)
1885 fcode2 = fcode;
1886 else if (TYPE_MAIN_VARIANT (type) == float_type_node)
1887 fcode2 = fcodef;
1888 else if (TYPE_MAIN_VARIANT (type) == long_double_type_node)
1889 fcode2 = fcodel;
1890 else
1891 return NULL_TREE;
1893 if (implicit_p && !builtin_decl_implicit_p (fcode2))
1894 return NULL_TREE;
1896 return builtin_decl_explicit (fcode2);
1899 /* Like mathfn_built_in_1(), but always use the implicit array. */
1901 tree
1902 mathfn_built_in (tree type, enum built_in_function fn)
1904 return mathfn_built_in_1 (type, fn, /*implicit=*/ 1);
1907 /* If errno must be maintained, expand the RTL to check if the result,
1908 TARGET, of a built-in function call, EXP, is NaN, and if so set
1909 errno to EDOM. */
1911 static void
1912 expand_errno_check (tree exp, rtx target)
1914 rtx lab = gen_label_rtx ();
1916 /* Test the result; if it is NaN, set errno=EDOM because
1917 the argument was not in the domain. */
1918 do_compare_rtx_and_jump (target, target, EQ, 0, GET_MODE (target),
1919 NULL_RTX, NULL_RTX, lab,
1920 /* The jump is very likely. */
1921 REG_BR_PROB_BASE - (REG_BR_PROB_BASE / 2000 - 1));
1923 #ifdef TARGET_EDOM
1924 /* If this built-in doesn't throw an exception, set errno directly. */
1925 if (TREE_NOTHROW (TREE_OPERAND (CALL_EXPR_FN (exp), 0)))
1927 #ifdef GEN_ERRNO_RTX
1928 rtx errno_rtx = GEN_ERRNO_RTX;
1929 #else
1930 rtx errno_rtx
1931 = gen_rtx_MEM (word_mode, gen_rtx_SYMBOL_REF (Pmode, "errno"));
1932 #endif
1933 emit_move_insn (errno_rtx, GEN_INT (TARGET_EDOM));
1934 emit_label (lab);
1935 return;
1937 #endif
1939 /* Make sure the library call isn't expanded as a tail call. */
1940 CALL_EXPR_TAILCALL (exp) = 0;
1942 /* We can't set errno=EDOM directly; let the library call do it.
1943 Pop the arguments right away in case the call gets deleted. */
1944 NO_DEFER_POP;
1945 expand_call (exp, target, 0);
1946 OK_DEFER_POP;
1947 emit_label (lab);
1950 /* Expand a call to one of the builtin math functions (sqrt, exp, or log).
1951 Return NULL_RTX if a normal call should be emitted rather than expanding
1952 the function in-line. EXP is the expression that is a call to the builtin
1953 function; if convenient, the result should be placed in TARGET.
1954 SUBTARGET may be used as the target for computing one of EXP's operands. */
1956 static rtx
1957 expand_builtin_mathfn (tree exp, rtx target, rtx subtarget)
1959 optab builtin_optab;
1960 rtx op0, insns;
1961 tree fndecl = get_callee_fndecl (exp);
1962 enum machine_mode mode;
1963 bool errno_set = false;
1964 bool try_widening = false;
1965 tree arg;
1967 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
1968 return NULL_RTX;
1970 arg = CALL_EXPR_ARG (exp, 0);
1972 switch (DECL_FUNCTION_CODE (fndecl))
1974 CASE_FLT_FN (BUILT_IN_SQRT):
1975 errno_set = ! tree_expr_nonnegative_p (arg);
1976 try_widening = true;
1977 builtin_optab = sqrt_optab;
1978 break;
1979 CASE_FLT_FN (BUILT_IN_EXP):
1980 errno_set = true; builtin_optab = exp_optab; break;
1981 CASE_FLT_FN (BUILT_IN_EXP10):
1982 CASE_FLT_FN (BUILT_IN_POW10):
1983 errno_set = true; builtin_optab = exp10_optab; break;
1984 CASE_FLT_FN (BUILT_IN_EXP2):
1985 errno_set = true; builtin_optab = exp2_optab; break;
1986 CASE_FLT_FN (BUILT_IN_EXPM1):
1987 errno_set = true; builtin_optab = expm1_optab; break;
1988 CASE_FLT_FN (BUILT_IN_LOGB):
1989 errno_set = true; builtin_optab = logb_optab; break;
1990 CASE_FLT_FN (BUILT_IN_LOG):
1991 errno_set = true; builtin_optab = log_optab; break;
1992 CASE_FLT_FN (BUILT_IN_LOG10):
1993 errno_set = true; builtin_optab = log10_optab; break;
1994 CASE_FLT_FN (BUILT_IN_LOG2):
1995 errno_set = true; builtin_optab = log2_optab; break;
1996 CASE_FLT_FN (BUILT_IN_LOG1P):
1997 errno_set = true; builtin_optab = log1p_optab; break;
1998 CASE_FLT_FN (BUILT_IN_ASIN):
1999 builtin_optab = asin_optab; break;
2000 CASE_FLT_FN (BUILT_IN_ACOS):
2001 builtin_optab = acos_optab; break;
2002 CASE_FLT_FN (BUILT_IN_TAN):
2003 builtin_optab = tan_optab; break;
2004 CASE_FLT_FN (BUILT_IN_ATAN):
2005 builtin_optab = atan_optab; break;
2006 CASE_FLT_FN (BUILT_IN_FLOOR):
2007 builtin_optab = floor_optab; break;
2008 CASE_FLT_FN (BUILT_IN_CEIL):
2009 builtin_optab = ceil_optab; break;
2010 CASE_FLT_FN (BUILT_IN_TRUNC):
2011 builtin_optab = btrunc_optab; break;
2012 CASE_FLT_FN (BUILT_IN_ROUND):
2013 builtin_optab = round_optab; break;
2014 CASE_FLT_FN (BUILT_IN_NEARBYINT):
2015 builtin_optab = nearbyint_optab;
2016 if (flag_trapping_math)
2017 break;
2018 /* Else fallthrough and expand as rint. */
2019 CASE_FLT_FN (BUILT_IN_RINT):
2020 builtin_optab = rint_optab; break;
2021 CASE_FLT_FN (BUILT_IN_SIGNIFICAND):
2022 builtin_optab = significand_optab; break;
2023 default:
2024 gcc_unreachable ();
2027 /* Make a suitable register to place result in. */
2028 mode = TYPE_MODE (TREE_TYPE (exp));
2030 if (! flag_errno_math || ! HONOR_NANS (mode))
2031 errno_set = false;
2033 /* Before working hard, check whether the instruction is available, but try
2034 to widen the mode for specific operations. */
2035 if ((optab_handler (builtin_optab, mode) != CODE_FOR_nothing
2036 || (try_widening && !excess_precision_type (TREE_TYPE (exp))))
2037 && (!errno_set || !optimize_insn_for_size_p ()))
2039 rtx result = gen_reg_rtx (mode);
2041 /* Wrap the computation of the argument in a SAVE_EXPR, as we may
2042 need to expand the argument again. This way, we will not perform
2043 side-effects more the once. */
2044 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
2046 op0 = expand_expr (arg, subtarget, VOIDmode, EXPAND_NORMAL);
2048 start_sequence ();
2050 /* Compute into RESULT.
2051 Set RESULT to wherever the result comes back. */
2052 result = expand_unop (mode, builtin_optab, op0, result, 0);
2054 if (result != 0)
2056 if (errno_set)
2057 expand_errno_check (exp, result);
2059 /* Output the entire sequence. */
2060 insns = get_insns ();
2061 end_sequence ();
2062 emit_insn (insns);
2063 return result;
2066 /* If we were unable to expand via the builtin, stop the sequence
2067 (without outputting the insns) and call to the library function
2068 with the stabilized argument list. */
2069 end_sequence ();
2072 return expand_call (exp, target, target == const0_rtx);
2075 /* Expand a call to the builtin binary math functions (pow and atan2).
2076 Return NULL_RTX if a normal call should be emitted rather than expanding the
2077 function in-line. EXP is the expression that is a call to the builtin
2078 function; if convenient, the result should be placed in TARGET.
2079 SUBTARGET may be used as the target for computing one of EXP's
2080 operands. */
2082 static rtx
2083 expand_builtin_mathfn_2 (tree exp, rtx target, rtx subtarget)
2085 optab builtin_optab;
2086 rtx op0, op1, insns, result;
2087 int op1_type = REAL_TYPE;
2088 tree fndecl = get_callee_fndecl (exp);
2089 tree arg0, arg1;
2090 enum machine_mode mode;
2091 bool errno_set = true;
2093 switch (DECL_FUNCTION_CODE (fndecl))
2095 CASE_FLT_FN (BUILT_IN_SCALBN):
2096 CASE_FLT_FN (BUILT_IN_SCALBLN):
2097 CASE_FLT_FN (BUILT_IN_LDEXP):
2098 op1_type = INTEGER_TYPE;
2099 default:
2100 break;
2103 if (!validate_arglist (exp, REAL_TYPE, op1_type, VOID_TYPE))
2104 return NULL_RTX;
2106 arg0 = CALL_EXPR_ARG (exp, 0);
2107 arg1 = CALL_EXPR_ARG (exp, 1);
2109 switch (DECL_FUNCTION_CODE (fndecl))
2111 CASE_FLT_FN (BUILT_IN_POW):
2112 builtin_optab = pow_optab; break;
2113 CASE_FLT_FN (BUILT_IN_ATAN2):
2114 builtin_optab = atan2_optab; break;
2115 CASE_FLT_FN (BUILT_IN_SCALB):
2116 if (REAL_MODE_FORMAT (TYPE_MODE (TREE_TYPE (exp)))->b != 2)
2117 return 0;
2118 builtin_optab = scalb_optab; break;
2119 CASE_FLT_FN (BUILT_IN_SCALBN):
2120 CASE_FLT_FN (BUILT_IN_SCALBLN):
2121 if (REAL_MODE_FORMAT (TYPE_MODE (TREE_TYPE (exp)))->b != 2)
2122 return 0;
2123 /* Fall through... */
2124 CASE_FLT_FN (BUILT_IN_LDEXP):
2125 builtin_optab = ldexp_optab; break;
2126 CASE_FLT_FN (BUILT_IN_FMOD):
2127 builtin_optab = fmod_optab; break;
2128 CASE_FLT_FN (BUILT_IN_REMAINDER):
2129 CASE_FLT_FN (BUILT_IN_DREM):
2130 builtin_optab = remainder_optab; break;
2131 default:
2132 gcc_unreachable ();
2135 /* Make a suitable register to place result in. */
2136 mode = TYPE_MODE (TREE_TYPE (exp));
2138 /* Before working hard, check whether the instruction is available. */
2139 if (optab_handler (builtin_optab, mode) == CODE_FOR_nothing)
2140 return NULL_RTX;
2142 result = gen_reg_rtx (mode);
2144 if (! flag_errno_math || ! HONOR_NANS (mode))
2145 errno_set = false;
2147 if (errno_set && optimize_insn_for_size_p ())
2148 return 0;
2150 /* Always stabilize the argument list. */
2151 CALL_EXPR_ARG (exp, 0) = arg0 = builtin_save_expr (arg0);
2152 CALL_EXPR_ARG (exp, 1) = arg1 = builtin_save_expr (arg1);
2154 op0 = expand_expr (arg0, subtarget, VOIDmode, EXPAND_NORMAL);
2155 op1 = expand_normal (arg1);
2157 start_sequence ();
2159 /* Compute into RESULT.
2160 Set RESULT to wherever the result comes back. */
2161 result = expand_binop (mode, builtin_optab, op0, op1,
2162 result, 0, OPTAB_DIRECT);
2164 /* If we were unable to expand via the builtin, stop the sequence
2165 (without outputting the insns) and call to the library function
2166 with the stabilized argument list. */
2167 if (result == 0)
2169 end_sequence ();
2170 return expand_call (exp, target, target == const0_rtx);
2173 if (errno_set)
2174 expand_errno_check (exp, result);
2176 /* Output the entire sequence. */
2177 insns = get_insns ();
2178 end_sequence ();
2179 emit_insn (insns);
2181 return result;
2184 /* Expand a call to the builtin trinary math functions (fma).
2185 Return NULL_RTX if a normal call should be emitted rather than expanding the
2186 function in-line. EXP is the expression that is a call to the builtin
2187 function; if convenient, the result should be placed in TARGET.
2188 SUBTARGET may be used as the target for computing one of EXP's
2189 operands. */
2191 static rtx
2192 expand_builtin_mathfn_ternary (tree exp, rtx target, rtx subtarget)
2194 optab builtin_optab;
2195 rtx op0, op1, op2, insns, result;
2196 tree fndecl = get_callee_fndecl (exp);
2197 tree arg0, arg1, arg2;
2198 enum machine_mode mode;
2200 if (!validate_arglist (exp, REAL_TYPE, REAL_TYPE, REAL_TYPE, VOID_TYPE))
2201 return NULL_RTX;
2203 arg0 = CALL_EXPR_ARG (exp, 0);
2204 arg1 = CALL_EXPR_ARG (exp, 1);
2205 arg2 = CALL_EXPR_ARG (exp, 2);
2207 switch (DECL_FUNCTION_CODE (fndecl))
2209 CASE_FLT_FN (BUILT_IN_FMA):
2210 builtin_optab = fma_optab; break;
2211 default:
2212 gcc_unreachable ();
2215 /* Make a suitable register to place result in. */
2216 mode = TYPE_MODE (TREE_TYPE (exp));
2218 /* Before working hard, check whether the instruction is available. */
2219 if (optab_handler (builtin_optab, mode) == CODE_FOR_nothing)
2220 return NULL_RTX;
2222 result = gen_reg_rtx (mode);
2224 /* Always stabilize the argument list. */
2225 CALL_EXPR_ARG (exp, 0) = arg0 = builtin_save_expr (arg0);
2226 CALL_EXPR_ARG (exp, 1) = arg1 = builtin_save_expr (arg1);
2227 CALL_EXPR_ARG (exp, 2) = arg2 = builtin_save_expr (arg2);
2229 op0 = expand_expr (arg0, subtarget, VOIDmode, EXPAND_NORMAL);
2230 op1 = expand_normal (arg1);
2231 op2 = expand_normal (arg2);
2233 start_sequence ();
2235 /* Compute into RESULT.
2236 Set RESULT to wherever the result comes back. */
2237 result = expand_ternary_op (mode, builtin_optab, op0, op1, op2,
2238 result, 0);
2240 /* If we were unable to expand via the builtin, stop the sequence
2241 (without outputting the insns) and call to the library function
2242 with the stabilized argument list. */
2243 if (result == 0)
2245 end_sequence ();
2246 return expand_call (exp, target, target == const0_rtx);
2249 /* Output the entire sequence. */
2250 insns = get_insns ();
2251 end_sequence ();
2252 emit_insn (insns);
2254 return result;
2257 /* Expand a call to the builtin sin and cos math functions.
2258 Return NULL_RTX if a normal call should be emitted rather than expanding the
2259 function in-line. EXP is the expression that is a call to the builtin
2260 function; if convenient, the result should be placed in TARGET.
2261 SUBTARGET may be used as the target for computing one of EXP's
2262 operands. */
2264 static rtx
2265 expand_builtin_mathfn_3 (tree exp, rtx target, rtx subtarget)
2267 optab builtin_optab;
2268 rtx op0, insns;
2269 tree fndecl = get_callee_fndecl (exp);
2270 enum machine_mode mode;
2271 tree arg;
2273 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
2274 return NULL_RTX;
2276 arg = CALL_EXPR_ARG (exp, 0);
2278 switch (DECL_FUNCTION_CODE (fndecl))
2280 CASE_FLT_FN (BUILT_IN_SIN):
2281 CASE_FLT_FN (BUILT_IN_COS):
2282 builtin_optab = sincos_optab; break;
2283 default:
2284 gcc_unreachable ();
2287 /* Make a suitable register to place result in. */
2288 mode = TYPE_MODE (TREE_TYPE (exp));
2290 /* Check if sincos insn is available, otherwise fallback
2291 to sin or cos insn. */
2292 if (optab_handler (builtin_optab, mode) == CODE_FOR_nothing)
2293 switch (DECL_FUNCTION_CODE (fndecl))
2295 CASE_FLT_FN (BUILT_IN_SIN):
2296 builtin_optab = sin_optab; break;
2297 CASE_FLT_FN (BUILT_IN_COS):
2298 builtin_optab = cos_optab; break;
2299 default:
2300 gcc_unreachable ();
2303 /* Before working hard, check whether the instruction is available. */
2304 if (optab_handler (builtin_optab, mode) != CODE_FOR_nothing)
2306 rtx result = gen_reg_rtx (mode);
2308 /* Wrap the computation of the argument in a SAVE_EXPR, as we may
2309 need to expand the argument again. This way, we will not perform
2310 side-effects more the once. */
2311 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
2313 op0 = expand_expr (arg, subtarget, VOIDmode, EXPAND_NORMAL);
2315 start_sequence ();
2317 /* Compute into RESULT.
2318 Set RESULT to wherever the result comes back. */
2319 if (builtin_optab == sincos_optab)
2321 int ok;
2323 switch (DECL_FUNCTION_CODE (fndecl))
2325 CASE_FLT_FN (BUILT_IN_SIN):
2326 ok = expand_twoval_unop (builtin_optab, op0, 0, result, 0);
2327 break;
2328 CASE_FLT_FN (BUILT_IN_COS):
2329 ok = expand_twoval_unop (builtin_optab, op0, result, 0, 0);
2330 break;
2331 default:
2332 gcc_unreachable ();
2334 gcc_assert (ok);
2336 else
2337 result = expand_unop (mode, builtin_optab, op0, result, 0);
2339 if (result != 0)
2341 /* Output the entire sequence. */
2342 insns = get_insns ();
2343 end_sequence ();
2344 emit_insn (insns);
2345 return result;
2348 /* If we were unable to expand via the builtin, stop the sequence
2349 (without outputting the insns) and call to the library function
2350 with the stabilized argument list. */
2351 end_sequence ();
2354 return expand_call (exp, target, target == const0_rtx);
2357 /* Given an interclass math builtin decl FNDECL and it's argument ARG
2358 return an RTL instruction code that implements the functionality.
2359 If that isn't possible or available return CODE_FOR_nothing. */
2361 static enum insn_code
2362 interclass_mathfn_icode (tree arg, tree fndecl)
2364 bool errno_set = false;
2365 optab builtin_optab = unknown_optab;
2366 enum machine_mode mode;
2368 switch (DECL_FUNCTION_CODE (fndecl))
2370 CASE_FLT_FN (BUILT_IN_ILOGB):
2371 errno_set = true; builtin_optab = ilogb_optab; break;
2372 CASE_FLT_FN (BUILT_IN_ISINF):
2373 builtin_optab = isinf_optab; break;
2374 case BUILT_IN_ISNORMAL:
2375 case BUILT_IN_ISFINITE:
2376 CASE_FLT_FN (BUILT_IN_FINITE):
2377 case BUILT_IN_FINITED32:
2378 case BUILT_IN_FINITED64:
2379 case BUILT_IN_FINITED128:
2380 case BUILT_IN_ISINFD32:
2381 case BUILT_IN_ISINFD64:
2382 case BUILT_IN_ISINFD128:
2383 /* These builtins have no optabs (yet). */
2384 break;
2385 default:
2386 gcc_unreachable ();
2389 /* There's no easy way to detect the case we need to set EDOM. */
2390 if (flag_errno_math && errno_set)
2391 return CODE_FOR_nothing;
2393 /* Optab mode depends on the mode of the input argument. */
2394 mode = TYPE_MODE (TREE_TYPE (arg));
2396 if (builtin_optab)
2397 return optab_handler (builtin_optab, mode);
2398 return CODE_FOR_nothing;
2401 /* Expand a call to one of the builtin math functions that operate on
2402 floating point argument and output an integer result (ilogb, isinf,
2403 isnan, etc).
2404 Return 0 if a normal call should be emitted rather than expanding the
2405 function in-line. EXP is the expression that is a call to the builtin
2406 function; if convenient, the result should be placed in TARGET. */
2408 static rtx
2409 expand_builtin_interclass_mathfn (tree exp, rtx target)
2411 enum insn_code icode = CODE_FOR_nothing;
2412 rtx op0;
2413 tree fndecl = get_callee_fndecl (exp);
2414 enum machine_mode mode;
2415 tree arg;
2417 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
2418 return NULL_RTX;
2420 arg = CALL_EXPR_ARG (exp, 0);
2421 icode = interclass_mathfn_icode (arg, fndecl);
2422 mode = TYPE_MODE (TREE_TYPE (arg));
2424 if (icode != CODE_FOR_nothing)
2426 struct expand_operand ops[1];
2427 rtx last = get_last_insn ();
2428 tree orig_arg = arg;
2430 /* Wrap the computation of the argument in a SAVE_EXPR, as we may
2431 need to expand the argument again. This way, we will not perform
2432 side-effects more the once. */
2433 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
2435 op0 = expand_expr (arg, NULL_RTX, VOIDmode, EXPAND_NORMAL);
2437 if (mode != GET_MODE (op0))
2438 op0 = convert_to_mode (mode, op0, 0);
2440 create_output_operand (&ops[0], target, TYPE_MODE (TREE_TYPE (exp)));
2441 if (maybe_legitimize_operands (icode, 0, 1, ops)
2442 && maybe_emit_unop_insn (icode, ops[0].value, op0, UNKNOWN))
2443 return ops[0].value;
2445 delete_insns_since (last);
2446 CALL_EXPR_ARG (exp, 0) = orig_arg;
2449 return NULL_RTX;
2452 /* Expand a call to the builtin sincos math function.
2453 Return NULL_RTX if a normal call should be emitted rather than expanding the
2454 function in-line. EXP is the expression that is a call to the builtin
2455 function. */
2457 static rtx
2458 expand_builtin_sincos (tree exp)
2460 rtx op0, op1, op2, target1, target2;
2461 enum machine_mode mode;
2462 tree arg, sinp, cosp;
2463 int result;
2464 location_t loc = EXPR_LOCATION (exp);
2465 tree alias_type, alias_off;
2467 if (!validate_arglist (exp, REAL_TYPE,
2468 POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
2469 return NULL_RTX;
2471 arg = CALL_EXPR_ARG (exp, 0);
2472 sinp = CALL_EXPR_ARG (exp, 1);
2473 cosp = CALL_EXPR_ARG (exp, 2);
2475 /* Make a suitable register to place result in. */
2476 mode = TYPE_MODE (TREE_TYPE (arg));
2478 /* Check if sincos insn is available, otherwise emit the call. */
2479 if (optab_handler (sincos_optab, mode) == CODE_FOR_nothing)
2480 return NULL_RTX;
2482 target1 = gen_reg_rtx (mode);
2483 target2 = gen_reg_rtx (mode);
2485 op0 = expand_normal (arg);
2486 alias_type = build_pointer_type_for_mode (TREE_TYPE (arg), ptr_mode, true);
2487 alias_off = build_int_cst (alias_type, 0);
2488 op1 = expand_normal (fold_build2_loc (loc, MEM_REF, TREE_TYPE (arg),
2489 sinp, alias_off));
2490 op2 = expand_normal (fold_build2_loc (loc, MEM_REF, TREE_TYPE (arg),
2491 cosp, alias_off));
2493 /* Compute into target1 and target2.
2494 Set TARGET to wherever the result comes back. */
2495 result = expand_twoval_unop (sincos_optab, op0, target2, target1, 0);
2496 gcc_assert (result);
2498 /* Move target1 and target2 to the memory locations indicated
2499 by op1 and op2. */
2500 emit_move_insn (op1, target1);
2501 emit_move_insn (op2, target2);
2503 return const0_rtx;
2506 /* Expand a call to the internal cexpi builtin to the sincos math function.
2507 EXP is the expression that is a call to the builtin function; if convenient,
2508 the result should be placed in TARGET. */
2510 static rtx
2511 expand_builtin_cexpi (tree exp, rtx target)
2513 tree fndecl = get_callee_fndecl (exp);
2514 tree arg, type;
2515 enum machine_mode mode;
2516 rtx op0, op1, op2;
2517 location_t loc = EXPR_LOCATION (exp);
2519 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
2520 return NULL_RTX;
2522 arg = CALL_EXPR_ARG (exp, 0);
2523 type = TREE_TYPE (arg);
2524 mode = TYPE_MODE (TREE_TYPE (arg));
2526 /* Try expanding via a sincos optab, fall back to emitting a libcall
2527 to sincos or cexp. We are sure we have sincos or cexp because cexpi
2528 is only generated from sincos, cexp or if we have either of them. */
2529 if (optab_handler (sincos_optab, mode) != CODE_FOR_nothing)
2531 op1 = gen_reg_rtx (mode);
2532 op2 = gen_reg_rtx (mode);
2534 op0 = expand_expr (arg, NULL_RTX, VOIDmode, EXPAND_NORMAL);
2536 /* Compute into op1 and op2. */
2537 expand_twoval_unop (sincos_optab, op0, op2, op1, 0);
2539 else if (TARGET_HAS_SINCOS)
2541 tree call, fn = NULL_TREE;
2542 tree top1, top2;
2543 rtx op1a, op2a;
2545 if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIF)
2546 fn = builtin_decl_explicit (BUILT_IN_SINCOSF);
2547 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPI)
2548 fn = builtin_decl_explicit (BUILT_IN_SINCOS);
2549 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIL)
2550 fn = builtin_decl_explicit (BUILT_IN_SINCOSL);
2551 else
2552 gcc_unreachable ();
2554 op1 = assign_temp (TREE_TYPE (arg), 1, 1);
2555 op2 = assign_temp (TREE_TYPE (arg), 1, 1);
2556 op1a = copy_addr_to_reg (XEXP (op1, 0));
2557 op2a = copy_addr_to_reg (XEXP (op2, 0));
2558 top1 = make_tree (build_pointer_type (TREE_TYPE (arg)), op1a);
2559 top2 = make_tree (build_pointer_type (TREE_TYPE (arg)), op2a);
2561 /* Make sure not to fold the sincos call again. */
2562 call = build1 (ADDR_EXPR, build_pointer_type (TREE_TYPE (fn)), fn);
2563 expand_normal (build_call_nary (TREE_TYPE (TREE_TYPE (fn)),
2564 call, 3, arg, top1, top2));
2566 else
2568 tree call, fn = NULL_TREE, narg;
2569 tree ctype = build_complex_type (type);
2571 if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIF)
2572 fn = builtin_decl_explicit (BUILT_IN_CEXPF);
2573 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPI)
2574 fn = builtin_decl_explicit (BUILT_IN_CEXP);
2575 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIL)
2576 fn = builtin_decl_explicit (BUILT_IN_CEXPL);
2577 else
2578 gcc_unreachable ();
2580 /* If we don't have a decl for cexp create one. This is the
2581 friendliest fallback if the user calls __builtin_cexpi
2582 without full target C99 function support. */
2583 if (fn == NULL_TREE)
2585 tree fntype;
2586 const char *name = NULL;
2588 if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIF)
2589 name = "cexpf";
2590 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPI)
2591 name = "cexp";
2592 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIL)
2593 name = "cexpl";
2595 fntype = build_function_type_list (ctype, ctype, NULL_TREE);
2596 fn = build_fn_decl (name, fntype);
2599 narg = fold_build2_loc (loc, COMPLEX_EXPR, ctype,
2600 build_real (type, dconst0), arg);
2602 /* Make sure not to fold the cexp call again. */
2603 call = build1 (ADDR_EXPR, build_pointer_type (TREE_TYPE (fn)), fn);
2604 return expand_expr (build_call_nary (ctype, call, 1, narg),
2605 target, VOIDmode, EXPAND_NORMAL);
2608 /* Now build the proper return type. */
2609 return expand_expr (build2 (COMPLEX_EXPR, build_complex_type (type),
2610 make_tree (TREE_TYPE (arg), op2),
2611 make_tree (TREE_TYPE (arg), op1)),
2612 target, VOIDmode, EXPAND_NORMAL);
2615 /* Conveniently construct a function call expression. FNDECL names the
2616 function to be called, N is the number of arguments, and the "..."
2617 parameters are the argument expressions. Unlike build_call_exr
2618 this doesn't fold the call, hence it will always return a CALL_EXPR. */
2620 static tree
2621 build_call_nofold_loc (location_t loc, tree fndecl, int n, ...)
2623 va_list ap;
2624 tree fntype = TREE_TYPE (fndecl);
2625 tree fn = build1 (ADDR_EXPR, build_pointer_type (fntype), fndecl);
2627 va_start (ap, n);
2628 fn = build_call_valist (TREE_TYPE (fntype), fn, n, ap);
2629 va_end (ap);
2630 SET_EXPR_LOCATION (fn, loc);
2631 return fn;
2634 /* Expand a call to one of the builtin rounding functions gcc defines
2635 as an extension (lfloor and lceil). As these are gcc extensions we
2636 do not need to worry about setting errno to EDOM.
2637 If expanding via optab fails, lower expression to (int)(floor(x)).
2638 EXP is the expression that is a call to the builtin function;
2639 if convenient, the result should be placed in TARGET. */
2641 static rtx
2642 expand_builtin_int_roundingfn (tree exp, rtx target)
2644 convert_optab builtin_optab;
2645 rtx op0, insns, tmp;
2646 tree fndecl = get_callee_fndecl (exp);
2647 enum built_in_function fallback_fn;
2648 tree fallback_fndecl;
2649 enum machine_mode mode;
2650 tree arg;
2652 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
2653 gcc_unreachable ();
2655 arg = CALL_EXPR_ARG (exp, 0);
2657 switch (DECL_FUNCTION_CODE (fndecl))
2659 CASE_FLT_FN (BUILT_IN_ICEIL):
2660 CASE_FLT_FN (BUILT_IN_LCEIL):
2661 CASE_FLT_FN (BUILT_IN_LLCEIL):
2662 builtin_optab = lceil_optab;
2663 fallback_fn = BUILT_IN_CEIL;
2664 break;
2666 CASE_FLT_FN (BUILT_IN_IFLOOR):
2667 CASE_FLT_FN (BUILT_IN_LFLOOR):
2668 CASE_FLT_FN (BUILT_IN_LLFLOOR):
2669 builtin_optab = lfloor_optab;
2670 fallback_fn = BUILT_IN_FLOOR;
2671 break;
2673 default:
2674 gcc_unreachable ();
2677 /* Make a suitable register to place result in. */
2678 mode = TYPE_MODE (TREE_TYPE (exp));
2680 target = gen_reg_rtx (mode);
2682 /* Wrap the computation of the argument in a SAVE_EXPR, as we may
2683 need to expand the argument again. This way, we will not perform
2684 side-effects more the once. */
2685 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
2687 op0 = expand_expr (arg, NULL, VOIDmode, EXPAND_NORMAL);
2689 start_sequence ();
2691 /* Compute into TARGET. */
2692 if (expand_sfix_optab (target, op0, builtin_optab))
2694 /* Output the entire sequence. */
2695 insns = get_insns ();
2696 end_sequence ();
2697 emit_insn (insns);
2698 return target;
2701 /* If we were unable to expand via the builtin, stop the sequence
2702 (without outputting the insns). */
2703 end_sequence ();
2705 /* Fall back to floating point rounding optab. */
2706 fallback_fndecl = mathfn_built_in (TREE_TYPE (arg), fallback_fn);
2708 /* For non-C99 targets we may end up without a fallback fndecl here
2709 if the user called __builtin_lfloor directly. In this case emit
2710 a call to the floor/ceil variants nevertheless. This should result
2711 in the best user experience for not full C99 targets. */
2712 if (fallback_fndecl == NULL_TREE)
2714 tree fntype;
2715 const char *name = NULL;
2717 switch (DECL_FUNCTION_CODE (fndecl))
2719 case BUILT_IN_ICEIL:
2720 case BUILT_IN_LCEIL:
2721 case BUILT_IN_LLCEIL:
2722 name = "ceil";
2723 break;
2724 case BUILT_IN_ICEILF:
2725 case BUILT_IN_LCEILF:
2726 case BUILT_IN_LLCEILF:
2727 name = "ceilf";
2728 break;
2729 case BUILT_IN_ICEILL:
2730 case BUILT_IN_LCEILL:
2731 case BUILT_IN_LLCEILL:
2732 name = "ceill";
2733 break;
2734 case BUILT_IN_IFLOOR:
2735 case BUILT_IN_LFLOOR:
2736 case BUILT_IN_LLFLOOR:
2737 name = "floor";
2738 break;
2739 case BUILT_IN_IFLOORF:
2740 case BUILT_IN_LFLOORF:
2741 case BUILT_IN_LLFLOORF:
2742 name = "floorf";
2743 break;
2744 case BUILT_IN_IFLOORL:
2745 case BUILT_IN_LFLOORL:
2746 case BUILT_IN_LLFLOORL:
2747 name = "floorl";
2748 break;
2749 default:
2750 gcc_unreachable ();
2753 fntype = build_function_type_list (TREE_TYPE (arg),
2754 TREE_TYPE (arg), NULL_TREE);
2755 fallback_fndecl = build_fn_decl (name, fntype);
2758 exp = build_call_nofold_loc (EXPR_LOCATION (exp), fallback_fndecl, 1, arg);
2760 tmp = expand_normal (exp);
2761 tmp = maybe_emit_group_store (tmp, TREE_TYPE (exp));
2763 /* Truncate the result of floating point optab to integer
2764 via expand_fix (). */
2765 target = gen_reg_rtx (mode);
2766 expand_fix (target, tmp, 0);
2768 return target;
2771 /* Expand a call to one of the builtin math functions doing integer
2772 conversion (lrint).
2773 Return 0 if a normal call should be emitted rather than expanding the
2774 function in-line. EXP is the expression that is a call to the builtin
2775 function; if convenient, the result should be placed in TARGET. */
2777 static rtx
2778 expand_builtin_int_roundingfn_2 (tree exp, rtx target)
2780 convert_optab builtin_optab;
2781 rtx op0, insns;
2782 tree fndecl = get_callee_fndecl (exp);
2783 tree arg;
2784 enum machine_mode mode;
2785 enum built_in_function fallback_fn = BUILT_IN_NONE;
2787 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
2788 gcc_unreachable ();
2790 arg = CALL_EXPR_ARG (exp, 0);
2792 switch (DECL_FUNCTION_CODE (fndecl))
2794 CASE_FLT_FN (BUILT_IN_IRINT):
2795 fallback_fn = BUILT_IN_LRINT;
2796 /* FALLTHRU */
2797 CASE_FLT_FN (BUILT_IN_LRINT):
2798 CASE_FLT_FN (BUILT_IN_LLRINT):
2799 builtin_optab = lrint_optab;
2800 break;
2802 CASE_FLT_FN (BUILT_IN_IROUND):
2803 fallback_fn = BUILT_IN_LROUND;
2804 /* FALLTHRU */
2805 CASE_FLT_FN (BUILT_IN_LROUND):
2806 CASE_FLT_FN (BUILT_IN_LLROUND):
2807 builtin_optab = lround_optab;
2808 break;
2810 default:
2811 gcc_unreachable ();
2814 /* There's no easy way to detect the case we need to set EDOM. */
2815 if (flag_errno_math && fallback_fn == BUILT_IN_NONE)
2816 return NULL_RTX;
2818 /* Make a suitable register to place result in. */
2819 mode = TYPE_MODE (TREE_TYPE (exp));
2821 /* There's no easy way to detect the case we need to set EDOM. */
2822 if (!flag_errno_math)
2824 rtx result = gen_reg_rtx (mode);
2826 /* Wrap the computation of the argument in a SAVE_EXPR, as we may
2827 need to expand the argument again. This way, we will not perform
2828 side-effects more the once. */
2829 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
2831 op0 = expand_expr (arg, NULL, VOIDmode, EXPAND_NORMAL);
2833 start_sequence ();
2835 if (expand_sfix_optab (result, op0, builtin_optab))
2837 /* Output the entire sequence. */
2838 insns = get_insns ();
2839 end_sequence ();
2840 emit_insn (insns);
2841 return result;
2844 /* If we were unable to expand via the builtin, stop the sequence
2845 (without outputting the insns) and call to the library function
2846 with the stabilized argument list. */
2847 end_sequence ();
2850 if (fallback_fn != BUILT_IN_NONE)
2852 /* Fall back to rounding to long int. Use implicit_p 0 - for non-C99
2853 targets, (int) round (x) should never be transformed into
2854 BUILT_IN_IROUND and if __builtin_iround is called directly, emit
2855 a call to lround in the hope that the target provides at least some
2856 C99 functions. This should result in the best user experience for
2857 not full C99 targets. */
2858 tree fallback_fndecl = mathfn_built_in_1 (TREE_TYPE (arg),
2859 fallback_fn, 0);
2861 exp = build_call_nofold_loc (EXPR_LOCATION (exp),
2862 fallback_fndecl, 1, arg);
2864 target = expand_call (exp, NULL_RTX, target == const0_rtx);
2865 target = maybe_emit_group_store (target, TREE_TYPE (exp));
2866 return convert_to_mode (mode, target, 0);
2869 return expand_call (exp, target, target == const0_rtx);
2872 /* Expand a call to the powi built-in mathematical function. Return NULL_RTX if
2873 a normal call should be emitted rather than expanding the function
2874 in-line. EXP is the expression that is a call to the builtin
2875 function; if convenient, the result should be placed in TARGET. */
2877 static rtx
2878 expand_builtin_powi (tree exp, rtx target)
2880 tree arg0, arg1;
2881 rtx op0, op1;
2882 enum machine_mode mode;
2883 enum machine_mode mode2;
2885 if (! validate_arglist (exp, REAL_TYPE, INTEGER_TYPE, VOID_TYPE))
2886 return NULL_RTX;
2888 arg0 = CALL_EXPR_ARG (exp, 0);
2889 arg1 = CALL_EXPR_ARG (exp, 1);
2890 mode = TYPE_MODE (TREE_TYPE (exp));
2892 /* Emit a libcall to libgcc. */
2894 /* Mode of the 2nd argument must match that of an int. */
2895 mode2 = mode_for_size (INT_TYPE_SIZE, MODE_INT, 0);
2897 if (target == NULL_RTX)
2898 target = gen_reg_rtx (mode);
2900 op0 = expand_expr (arg0, NULL_RTX, mode, EXPAND_NORMAL);
2901 if (GET_MODE (op0) != mode)
2902 op0 = convert_to_mode (mode, op0, 0);
2903 op1 = expand_expr (arg1, NULL_RTX, mode2, EXPAND_NORMAL);
2904 if (GET_MODE (op1) != mode2)
2905 op1 = convert_to_mode (mode2, op1, 0);
2907 target = emit_library_call_value (optab_libfunc (powi_optab, mode),
2908 target, LCT_CONST, mode, 2,
2909 op0, mode, op1, mode2);
2911 return target;
2914 /* Expand expression EXP which is a call to the strlen builtin. Return
2915 NULL_RTX if we failed the caller should emit a normal call, otherwise
2916 try to get the result in TARGET, if convenient. */
2918 static rtx
2919 expand_builtin_strlen (tree exp, rtx target,
2920 enum machine_mode target_mode)
2922 if (!validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
2923 return NULL_RTX;
2924 else
2926 struct expand_operand ops[4];
2927 rtx pat;
2928 tree len;
2929 tree src = CALL_EXPR_ARG (exp, 0);
2930 rtx src_reg, before_strlen;
2931 enum machine_mode insn_mode = target_mode;
2932 enum insn_code icode = CODE_FOR_nothing;
2933 unsigned int align;
2935 /* If the length can be computed at compile-time, return it. */
2936 len = c_strlen (src, 0);
2937 if (len)
2938 return expand_expr (len, target, target_mode, EXPAND_NORMAL);
2940 /* If the length can be computed at compile-time and is constant
2941 integer, but there are side-effects in src, evaluate
2942 src for side-effects, then return len.
2943 E.g. x = strlen (i++ ? "xfoo" + 1 : "bar");
2944 can be optimized into: i++; x = 3; */
2945 len = c_strlen (src, 1);
2946 if (len && TREE_CODE (len) == INTEGER_CST)
2948 expand_expr (src, const0_rtx, VOIDmode, EXPAND_NORMAL);
2949 return expand_expr (len, target, target_mode, EXPAND_NORMAL);
2952 align = get_pointer_alignment (src) / BITS_PER_UNIT;
2954 /* If SRC is not a pointer type, don't do this operation inline. */
2955 if (align == 0)
2956 return NULL_RTX;
2958 /* Bail out if we can't compute strlen in the right mode. */
2959 while (insn_mode != VOIDmode)
2961 icode = optab_handler (strlen_optab, insn_mode);
2962 if (icode != CODE_FOR_nothing)
2963 break;
2965 insn_mode = GET_MODE_WIDER_MODE (insn_mode);
2967 if (insn_mode == VOIDmode)
2968 return NULL_RTX;
2970 /* Make a place to hold the source address. We will not expand
2971 the actual source until we are sure that the expansion will
2972 not fail -- there are trees that cannot be expanded twice. */
2973 src_reg = gen_reg_rtx (Pmode);
2975 /* Mark the beginning of the strlen sequence so we can emit the
2976 source operand later. */
2977 before_strlen = get_last_insn ();
2979 create_output_operand (&ops[0], target, insn_mode);
2980 create_fixed_operand (&ops[1], gen_rtx_MEM (BLKmode, src_reg));
2981 create_integer_operand (&ops[2], 0);
2982 create_integer_operand (&ops[3], align);
2983 if (!maybe_expand_insn (icode, 4, ops))
2984 return NULL_RTX;
2986 /* Now that we are assured of success, expand the source. */
2987 start_sequence ();
2988 pat = expand_expr (src, src_reg, Pmode, EXPAND_NORMAL);
2989 if (pat != src_reg)
2991 #ifdef POINTERS_EXTEND_UNSIGNED
2992 if (GET_MODE (pat) != Pmode)
2993 pat = convert_to_mode (Pmode, pat,
2994 POINTERS_EXTEND_UNSIGNED);
2995 #endif
2996 emit_move_insn (src_reg, pat);
2998 pat = get_insns ();
2999 end_sequence ();
3001 if (before_strlen)
3002 emit_insn_after (pat, before_strlen);
3003 else
3004 emit_insn_before (pat, get_insns ());
3006 /* Return the value in the proper mode for this function. */
3007 if (GET_MODE (ops[0].value) == target_mode)
3008 target = ops[0].value;
3009 else if (target != 0)
3010 convert_move (target, ops[0].value, 0);
3011 else
3012 target = convert_to_mode (target_mode, ops[0].value, 0);
3014 return target;
3018 /* Callback routine for store_by_pieces. Read GET_MODE_BITSIZE (MODE)
3019 bytes from constant string DATA + OFFSET and return it as target
3020 constant. */
3022 static rtx
3023 builtin_memcpy_read_str (void *data, HOST_WIDE_INT offset,
3024 enum machine_mode mode)
3026 const char *str = (const char *) data;
3028 gcc_assert (offset >= 0
3029 && ((unsigned HOST_WIDE_INT) offset + GET_MODE_SIZE (mode)
3030 <= strlen (str) + 1));
3032 return c_readstr (str + offset, mode);
3035 /* Expand a call EXP to the memcpy builtin.
3036 Return NULL_RTX if we failed, the caller should emit a normal call,
3037 otherwise try to get the result in TARGET, if convenient (and in
3038 mode MODE if that's convenient). */
3040 static rtx
3041 expand_builtin_memcpy (tree exp, rtx target)
3043 if (!validate_arglist (exp,
3044 POINTER_TYPE, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3045 return NULL_RTX;
3046 else
3048 tree dest = CALL_EXPR_ARG (exp, 0);
3049 tree src = CALL_EXPR_ARG (exp, 1);
3050 tree len = CALL_EXPR_ARG (exp, 2);
3051 const char *src_str;
3052 unsigned int src_align = get_pointer_alignment (src);
3053 unsigned int dest_align = get_pointer_alignment (dest);
3054 rtx dest_mem, src_mem, dest_addr, len_rtx;
3055 HOST_WIDE_INT expected_size = -1;
3056 unsigned int expected_align = 0;
3058 /* If DEST is not a pointer type, call the normal function. */
3059 if (dest_align == 0)
3060 return NULL_RTX;
3062 /* If either SRC is not a pointer type, don't do this
3063 operation in-line. */
3064 if (src_align == 0)
3065 return NULL_RTX;
3067 if (currently_expanding_gimple_stmt)
3068 stringop_block_profile (currently_expanding_gimple_stmt,
3069 &expected_align, &expected_size);
3071 if (expected_align < dest_align)
3072 expected_align = dest_align;
3073 dest_mem = get_memory_rtx (dest, len);
3074 set_mem_align (dest_mem, dest_align);
3075 len_rtx = expand_normal (len);
3076 src_str = c_getstr (src);
3078 /* If SRC is a string constant and block move would be done
3079 by pieces, we can avoid loading the string from memory
3080 and only stored the computed constants. */
3081 if (src_str
3082 && CONST_INT_P (len_rtx)
3083 && (unsigned HOST_WIDE_INT) INTVAL (len_rtx) <= strlen (src_str) + 1
3084 && can_store_by_pieces (INTVAL (len_rtx), builtin_memcpy_read_str,
3085 CONST_CAST (char *, src_str),
3086 dest_align, false))
3088 dest_mem = store_by_pieces (dest_mem, INTVAL (len_rtx),
3089 builtin_memcpy_read_str,
3090 CONST_CAST (char *, src_str),
3091 dest_align, false, 0);
3092 dest_mem = force_operand (XEXP (dest_mem, 0), target);
3093 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3094 return dest_mem;
3097 src_mem = get_memory_rtx (src, len);
3098 set_mem_align (src_mem, src_align);
3100 /* Copy word part most expediently. */
3101 dest_addr = emit_block_move_hints (dest_mem, src_mem, len_rtx,
3102 CALL_EXPR_TAILCALL (exp)
3103 ? BLOCK_OP_TAILCALL : BLOCK_OP_NORMAL,
3104 expected_align, expected_size);
3106 if (dest_addr == 0)
3108 dest_addr = force_operand (XEXP (dest_mem, 0), target);
3109 dest_addr = convert_memory_address (ptr_mode, dest_addr);
3111 return dest_addr;
3115 /* Expand a call EXP to the mempcpy builtin.
3116 Return NULL_RTX if we failed; the caller should emit a normal call,
3117 otherwise try to get the result in TARGET, if convenient (and in
3118 mode MODE if that's convenient). If ENDP is 0 return the
3119 destination pointer, if ENDP is 1 return the end pointer ala
3120 mempcpy, and if ENDP is 2 return the end pointer minus one ala
3121 stpcpy. */
3123 static rtx
3124 expand_builtin_mempcpy (tree exp, rtx target, enum machine_mode mode)
3126 if (!validate_arglist (exp,
3127 POINTER_TYPE, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3128 return NULL_RTX;
3129 else
3131 tree dest = CALL_EXPR_ARG (exp, 0);
3132 tree src = CALL_EXPR_ARG (exp, 1);
3133 tree len = CALL_EXPR_ARG (exp, 2);
3134 return expand_builtin_mempcpy_args (dest, src, len,
3135 target, mode, /*endp=*/ 1);
3139 /* Helper function to do the actual work for expand_builtin_mempcpy. The
3140 arguments to the builtin_mempcpy call DEST, SRC, and LEN are broken out
3141 so that this can also be called without constructing an actual CALL_EXPR.
3142 The other arguments and return value are the same as for
3143 expand_builtin_mempcpy. */
3145 static rtx
3146 expand_builtin_mempcpy_args (tree dest, tree src, tree len,
3147 rtx target, enum machine_mode mode, int endp)
3149 /* If return value is ignored, transform mempcpy into memcpy. */
3150 if (target == const0_rtx && builtin_decl_implicit_p (BUILT_IN_MEMCPY))
3152 tree fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
3153 tree result = build_call_nofold_loc (UNKNOWN_LOCATION, fn, 3,
3154 dest, src, len);
3155 return expand_expr (result, target, mode, EXPAND_NORMAL);
3157 else
3159 const char *src_str;
3160 unsigned int src_align = get_pointer_alignment (src);
3161 unsigned int dest_align = get_pointer_alignment (dest);
3162 rtx dest_mem, src_mem, len_rtx;
3164 /* If either SRC or DEST is not a pointer type, don't do this
3165 operation in-line. */
3166 if (dest_align == 0 || src_align == 0)
3167 return NULL_RTX;
3169 /* If LEN is not constant, call the normal function. */
3170 if (! host_integerp (len, 1))
3171 return NULL_RTX;
3173 len_rtx = expand_normal (len);
3174 src_str = c_getstr (src);
3176 /* If SRC is a string constant and block move would be done
3177 by pieces, we can avoid loading the string from memory
3178 and only stored the computed constants. */
3179 if (src_str
3180 && CONST_INT_P (len_rtx)
3181 && (unsigned HOST_WIDE_INT) INTVAL (len_rtx) <= strlen (src_str) + 1
3182 && can_store_by_pieces (INTVAL (len_rtx), builtin_memcpy_read_str,
3183 CONST_CAST (char *, src_str),
3184 dest_align, false))
3186 dest_mem = get_memory_rtx (dest, len);
3187 set_mem_align (dest_mem, dest_align);
3188 dest_mem = store_by_pieces (dest_mem, INTVAL (len_rtx),
3189 builtin_memcpy_read_str,
3190 CONST_CAST (char *, src_str),
3191 dest_align, false, endp);
3192 dest_mem = force_operand (XEXP (dest_mem, 0), NULL_RTX);
3193 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3194 return dest_mem;
3197 if (CONST_INT_P (len_rtx)
3198 && can_move_by_pieces (INTVAL (len_rtx),
3199 MIN (dest_align, src_align)))
3201 dest_mem = get_memory_rtx (dest, len);
3202 set_mem_align (dest_mem, dest_align);
3203 src_mem = get_memory_rtx (src, len);
3204 set_mem_align (src_mem, src_align);
3205 dest_mem = move_by_pieces (dest_mem, src_mem, INTVAL (len_rtx),
3206 MIN (dest_align, src_align), endp);
3207 dest_mem = force_operand (XEXP (dest_mem, 0), NULL_RTX);
3208 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3209 return dest_mem;
3212 return NULL_RTX;
3216 #ifndef HAVE_movstr
3217 # define HAVE_movstr 0
3218 # define CODE_FOR_movstr CODE_FOR_nothing
3219 #endif
3221 /* Expand into a movstr instruction, if one is available. Return NULL_RTX if
3222 we failed, the caller should emit a normal call, otherwise try to
3223 get the result in TARGET, if convenient. If ENDP is 0 return the
3224 destination pointer, if ENDP is 1 return the end pointer ala
3225 mempcpy, and if ENDP is 2 return the end pointer minus one ala
3226 stpcpy. */
3228 static rtx
3229 expand_movstr (tree dest, tree src, rtx target, int endp)
3231 struct expand_operand ops[3];
3232 rtx dest_mem;
3233 rtx src_mem;
3235 if (!HAVE_movstr)
3236 return NULL_RTX;
3238 dest_mem = get_memory_rtx (dest, NULL);
3239 src_mem = get_memory_rtx (src, NULL);
3240 if (!endp)
3242 target = force_reg (Pmode, XEXP (dest_mem, 0));
3243 dest_mem = replace_equiv_address (dest_mem, target);
3246 create_output_operand (&ops[0], endp ? target : NULL_RTX, Pmode);
3247 create_fixed_operand (&ops[1], dest_mem);
3248 create_fixed_operand (&ops[2], src_mem);
3249 expand_insn (CODE_FOR_movstr, 3, ops);
3251 if (endp && target != const0_rtx)
3253 target = ops[0].value;
3254 /* movstr is supposed to set end to the address of the NUL
3255 terminator. If the caller requested a mempcpy-like return value,
3256 adjust it. */
3257 if (endp == 1)
3259 rtx tem = plus_constant (GET_MODE (target),
3260 gen_lowpart (GET_MODE (target), target), 1);
3261 emit_move_insn (target, force_operand (tem, NULL_RTX));
3264 return target;
3267 /* Expand expression EXP, which is a call to the strcpy builtin. Return
3268 NULL_RTX if we failed the caller should emit a normal call, otherwise
3269 try to get the result in TARGET, if convenient (and in mode MODE if that's
3270 convenient). */
3272 static rtx
3273 expand_builtin_strcpy (tree exp, rtx target)
3275 if (validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
3277 tree dest = CALL_EXPR_ARG (exp, 0);
3278 tree src = CALL_EXPR_ARG (exp, 1);
3279 return expand_builtin_strcpy_args (dest, src, target);
3281 return NULL_RTX;
3284 /* Helper function to do the actual work for expand_builtin_strcpy. The
3285 arguments to the builtin_strcpy call DEST and SRC are broken out
3286 so that this can also be called without constructing an actual CALL_EXPR.
3287 The other arguments and return value are the same as for
3288 expand_builtin_strcpy. */
3290 static rtx
3291 expand_builtin_strcpy_args (tree dest, tree src, rtx target)
3293 return expand_movstr (dest, src, target, /*endp=*/0);
3296 /* Expand a call EXP to the stpcpy builtin.
3297 Return NULL_RTX if we failed the caller should emit a normal call,
3298 otherwise try to get the result in TARGET, if convenient (and in
3299 mode MODE if that's convenient). */
3301 static rtx
3302 expand_builtin_stpcpy (tree exp, rtx target, enum machine_mode mode)
3304 tree dst, src;
3305 location_t loc = EXPR_LOCATION (exp);
3307 if (!validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
3308 return NULL_RTX;
3310 dst = CALL_EXPR_ARG (exp, 0);
3311 src = CALL_EXPR_ARG (exp, 1);
3313 /* If return value is ignored, transform stpcpy into strcpy. */
3314 if (target == const0_rtx && builtin_decl_implicit (BUILT_IN_STRCPY))
3316 tree fn = builtin_decl_implicit (BUILT_IN_STRCPY);
3317 tree result = build_call_nofold_loc (loc, fn, 2, dst, src);
3318 return expand_expr (result, target, mode, EXPAND_NORMAL);
3320 else
3322 tree len, lenp1;
3323 rtx ret;
3325 /* Ensure we get an actual string whose length can be evaluated at
3326 compile-time, not an expression containing a string. This is
3327 because the latter will potentially produce pessimized code
3328 when used to produce the return value. */
3329 if (! c_getstr (src) || ! (len = c_strlen (src, 0)))
3330 return expand_movstr (dst, src, target, /*endp=*/2);
3332 lenp1 = size_binop_loc (loc, PLUS_EXPR, len, ssize_int (1));
3333 ret = expand_builtin_mempcpy_args (dst, src, lenp1,
3334 target, mode, /*endp=*/2);
3336 if (ret)
3337 return ret;
3339 if (TREE_CODE (len) == INTEGER_CST)
3341 rtx len_rtx = expand_normal (len);
3343 if (CONST_INT_P (len_rtx))
3345 ret = expand_builtin_strcpy_args (dst, src, target);
3347 if (ret)
3349 if (! target)
3351 if (mode != VOIDmode)
3352 target = gen_reg_rtx (mode);
3353 else
3354 target = gen_reg_rtx (GET_MODE (ret));
3356 if (GET_MODE (target) != GET_MODE (ret))
3357 ret = gen_lowpart (GET_MODE (target), ret);
3359 ret = plus_constant (GET_MODE (ret), ret, INTVAL (len_rtx));
3360 ret = emit_move_insn (target, force_operand (ret, NULL_RTX));
3361 gcc_assert (ret);
3363 return target;
3368 return expand_movstr (dst, src, target, /*endp=*/2);
3372 /* Callback routine for store_by_pieces. Read GET_MODE_BITSIZE (MODE)
3373 bytes from constant string DATA + OFFSET and return it as target
3374 constant. */
3377 builtin_strncpy_read_str (void *data, HOST_WIDE_INT offset,
3378 enum machine_mode mode)
3380 const char *str = (const char *) data;
3382 if ((unsigned HOST_WIDE_INT) offset > strlen (str))
3383 return const0_rtx;
3385 return c_readstr (str + offset, mode);
3388 /* Expand expression EXP, which is a call to the strncpy builtin. Return
3389 NULL_RTX if we failed the caller should emit a normal call. */
3391 static rtx
3392 expand_builtin_strncpy (tree exp, rtx target)
3394 location_t loc = EXPR_LOCATION (exp);
3396 if (validate_arglist (exp,
3397 POINTER_TYPE, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3399 tree dest = CALL_EXPR_ARG (exp, 0);
3400 tree src = CALL_EXPR_ARG (exp, 1);
3401 tree len = CALL_EXPR_ARG (exp, 2);
3402 tree slen = c_strlen (src, 1);
3404 /* We must be passed a constant len and src parameter. */
3405 if (!host_integerp (len, 1) || !slen || !host_integerp (slen, 1))
3406 return NULL_RTX;
3408 slen = size_binop_loc (loc, PLUS_EXPR, slen, ssize_int (1));
3410 /* We're required to pad with trailing zeros if the requested
3411 len is greater than strlen(s2)+1. In that case try to
3412 use store_by_pieces, if it fails, punt. */
3413 if (tree_int_cst_lt (slen, len))
3415 unsigned int dest_align = get_pointer_alignment (dest);
3416 const char *p = c_getstr (src);
3417 rtx dest_mem;
3419 if (!p || dest_align == 0 || !host_integerp (len, 1)
3420 || !can_store_by_pieces (tree_low_cst (len, 1),
3421 builtin_strncpy_read_str,
3422 CONST_CAST (char *, p),
3423 dest_align, false))
3424 return NULL_RTX;
3426 dest_mem = get_memory_rtx (dest, len);
3427 store_by_pieces (dest_mem, tree_low_cst (len, 1),
3428 builtin_strncpy_read_str,
3429 CONST_CAST (char *, p), dest_align, false, 0);
3430 dest_mem = force_operand (XEXP (dest_mem, 0), target);
3431 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3432 return dest_mem;
3435 return NULL_RTX;
3438 /* Callback routine for store_by_pieces. Read GET_MODE_BITSIZE (MODE)
3439 bytes from constant string DATA + OFFSET and return it as target
3440 constant. */
3443 builtin_memset_read_str (void *data, HOST_WIDE_INT offset ATTRIBUTE_UNUSED,
3444 enum machine_mode mode)
3446 const char *c = (const char *) data;
3447 char *p = XALLOCAVEC (char, GET_MODE_SIZE (mode));
3449 memset (p, *c, GET_MODE_SIZE (mode));
3451 return c_readstr (p, mode);
3454 /* Callback routine for store_by_pieces. Return the RTL of a register
3455 containing GET_MODE_SIZE (MODE) consecutive copies of the unsigned
3456 char value given in the RTL register data. For example, if mode is
3457 4 bytes wide, return the RTL for 0x01010101*data. */
3459 static rtx
3460 builtin_memset_gen_str (void *data, HOST_WIDE_INT offset ATTRIBUTE_UNUSED,
3461 enum machine_mode mode)
3463 rtx target, coeff;
3464 size_t size;
3465 char *p;
3467 size = GET_MODE_SIZE (mode);
3468 if (size == 1)
3469 return (rtx) data;
3471 p = XALLOCAVEC (char, size);
3472 memset (p, 1, size);
3473 coeff = c_readstr (p, mode);
3475 target = convert_to_mode (mode, (rtx) data, 1);
3476 target = expand_mult (mode, target, coeff, NULL_RTX, 1);
3477 return force_reg (mode, target);
3480 /* Expand expression EXP, which is a call to the memset builtin. Return
3481 NULL_RTX if we failed the caller should emit a normal call, otherwise
3482 try to get the result in TARGET, if convenient (and in mode MODE if that's
3483 convenient). */
3485 static rtx
3486 expand_builtin_memset (tree exp, rtx target, enum machine_mode mode)
3488 if (!validate_arglist (exp,
3489 POINTER_TYPE, INTEGER_TYPE, INTEGER_TYPE, VOID_TYPE))
3490 return NULL_RTX;
3491 else
3493 tree dest = CALL_EXPR_ARG (exp, 0);
3494 tree val = CALL_EXPR_ARG (exp, 1);
3495 tree len = CALL_EXPR_ARG (exp, 2);
3496 return expand_builtin_memset_args (dest, val, len, target, mode, exp);
3500 /* Helper function to do the actual work for expand_builtin_memset. The
3501 arguments to the builtin_memset call DEST, VAL, and LEN are broken out
3502 so that this can also be called without constructing an actual CALL_EXPR.
3503 The other arguments and return value are the same as for
3504 expand_builtin_memset. */
3506 static rtx
3507 expand_builtin_memset_args (tree dest, tree val, tree len,
3508 rtx target, enum machine_mode mode, tree orig_exp)
3510 tree fndecl, fn;
3511 enum built_in_function fcode;
3512 enum machine_mode val_mode;
3513 char c;
3514 unsigned int dest_align;
3515 rtx dest_mem, dest_addr, len_rtx;
3516 HOST_WIDE_INT expected_size = -1;
3517 unsigned int expected_align = 0;
3519 dest_align = get_pointer_alignment (dest);
3521 /* If DEST is not a pointer type, don't do this operation in-line. */
3522 if (dest_align == 0)
3523 return NULL_RTX;
3525 if (currently_expanding_gimple_stmt)
3526 stringop_block_profile (currently_expanding_gimple_stmt,
3527 &expected_align, &expected_size);
3529 if (expected_align < dest_align)
3530 expected_align = dest_align;
3532 /* If the LEN parameter is zero, return DEST. */
3533 if (integer_zerop (len))
3535 /* Evaluate and ignore VAL in case it has side-effects. */
3536 expand_expr (val, const0_rtx, VOIDmode, EXPAND_NORMAL);
3537 return expand_expr (dest, target, mode, EXPAND_NORMAL);
3540 /* Stabilize the arguments in case we fail. */
3541 dest = builtin_save_expr (dest);
3542 val = builtin_save_expr (val);
3543 len = builtin_save_expr (len);
3545 len_rtx = expand_normal (len);
3546 dest_mem = get_memory_rtx (dest, len);
3547 val_mode = TYPE_MODE (unsigned_char_type_node);
3549 if (TREE_CODE (val) != INTEGER_CST)
3551 rtx val_rtx;
3553 val_rtx = expand_normal (val);
3554 val_rtx = convert_to_mode (val_mode, val_rtx, 0);
3556 /* Assume that we can memset by pieces if we can store
3557 * the coefficients by pieces (in the required modes).
3558 * We can't pass builtin_memset_gen_str as that emits RTL. */
3559 c = 1;
3560 if (host_integerp (len, 1)
3561 && can_store_by_pieces (tree_low_cst (len, 1),
3562 builtin_memset_read_str, &c, dest_align,
3563 true))
3565 val_rtx = force_reg (val_mode, val_rtx);
3566 store_by_pieces (dest_mem, tree_low_cst (len, 1),
3567 builtin_memset_gen_str, val_rtx, dest_align,
3568 true, 0);
3570 else if (!set_storage_via_setmem (dest_mem, len_rtx, val_rtx,
3571 dest_align, expected_align,
3572 expected_size))
3573 goto do_libcall;
3575 dest_mem = force_operand (XEXP (dest_mem, 0), NULL_RTX);
3576 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3577 return dest_mem;
3580 if (target_char_cast (val, &c))
3581 goto do_libcall;
3583 if (c)
3585 if (host_integerp (len, 1)
3586 && can_store_by_pieces (tree_low_cst (len, 1),
3587 builtin_memset_read_str, &c, dest_align,
3588 true))
3589 store_by_pieces (dest_mem, tree_low_cst (len, 1),
3590 builtin_memset_read_str, &c, dest_align, true, 0);
3591 else if (!set_storage_via_setmem (dest_mem, len_rtx,
3592 gen_int_mode (c, val_mode),
3593 dest_align, expected_align,
3594 expected_size))
3595 goto do_libcall;
3597 dest_mem = force_operand (XEXP (dest_mem, 0), NULL_RTX);
3598 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3599 return dest_mem;
3602 set_mem_align (dest_mem, dest_align);
3603 dest_addr = clear_storage_hints (dest_mem, len_rtx,
3604 CALL_EXPR_TAILCALL (orig_exp)
3605 ? BLOCK_OP_TAILCALL : BLOCK_OP_NORMAL,
3606 expected_align, expected_size);
3608 if (dest_addr == 0)
3610 dest_addr = force_operand (XEXP (dest_mem, 0), NULL_RTX);
3611 dest_addr = convert_memory_address (ptr_mode, dest_addr);
3614 return dest_addr;
3616 do_libcall:
3617 fndecl = get_callee_fndecl (orig_exp);
3618 fcode = DECL_FUNCTION_CODE (fndecl);
3619 if (fcode == BUILT_IN_MEMSET)
3620 fn = build_call_nofold_loc (EXPR_LOCATION (orig_exp), fndecl, 3,
3621 dest, val, len);
3622 else if (fcode == BUILT_IN_BZERO)
3623 fn = build_call_nofold_loc (EXPR_LOCATION (orig_exp), fndecl, 2,
3624 dest, len);
3625 else
3626 gcc_unreachable ();
3627 gcc_assert (TREE_CODE (fn) == CALL_EXPR);
3628 CALL_EXPR_TAILCALL (fn) = CALL_EXPR_TAILCALL (orig_exp);
3629 return expand_call (fn, target, target == const0_rtx);
3632 /* Expand expression EXP, which is a call to the bzero builtin. Return
3633 NULL_RTX if we failed the caller should emit a normal call. */
3635 static rtx
3636 expand_builtin_bzero (tree exp)
3638 tree dest, size;
3639 location_t loc = EXPR_LOCATION (exp);
3641 if (!validate_arglist (exp, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3642 return NULL_RTX;
3644 dest = CALL_EXPR_ARG (exp, 0);
3645 size = CALL_EXPR_ARG (exp, 1);
3647 /* New argument list transforming bzero(ptr x, int y) to
3648 memset(ptr x, int 0, size_t y). This is done this way
3649 so that if it isn't expanded inline, we fallback to
3650 calling bzero instead of memset. */
3652 return expand_builtin_memset_args (dest, integer_zero_node,
3653 fold_convert_loc (loc,
3654 size_type_node, size),
3655 const0_rtx, VOIDmode, exp);
3658 /* Expand expression EXP, which is a call to the memcmp built-in function.
3659 Return NULL_RTX if we failed and the caller should emit a normal call,
3660 otherwise try to get the result in TARGET, if convenient (and in mode
3661 MODE, if that's convenient). */
3663 static rtx
3664 expand_builtin_memcmp (tree exp, ATTRIBUTE_UNUSED rtx target,
3665 ATTRIBUTE_UNUSED enum machine_mode mode)
3667 location_t loc ATTRIBUTE_UNUSED = EXPR_LOCATION (exp);
3669 if (!validate_arglist (exp,
3670 POINTER_TYPE, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3671 return NULL_RTX;
3673 /* Note: The cmpstrnsi pattern, if it exists, is not suitable for
3674 implementing memcmp because it will stop if it encounters two
3675 zero bytes. */
3676 #if defined HAVE_cmpmemsi
3678 rtx arg1_rtx, arg2_rtx, arg3_rtx;
3679 rtx result;
3680 rtx insn;
3681 tree arg1 = CALL_EXPR_ARG (exp, 0);
3682 tree arg2 = CALL_EXPR_ARG (exp, 1);
3683 tree len = CALL_EXPR_ARG (exp, 2);
3685 unsigned int arg1_align = get_pointer_alignment (arg1) / BITS_PER_UNIT;
3686 unsigned int arg2_align = get_pointer_alignment (arg2) / BITS_PER_UNIT;
3687 enum machine_mode insn_mode;
3689 if (HAVE_cmpmemsi)
3690 insn_mode = insn_data[(int) CODE_FOR_cmpmemsi].operand[0].mode;
3691 else
3692 return NULL_RTX;
3694 /* If we don't have POINTER_TYPE, call the function. */
3695 if (arg1_align == 0 || arg2_align == 0)
3696 return NULL_RTX;
3698 /* Make a place to write the result of the instruction. */
3699 result = target;
3700 if (! (result != 0
3701 && REG_P (result) && GET_MODE (result) == insn_mode
3702 && REGNO (result) >= FIRST_PSEUDO_REGISTER))
3703 result = gen_reg_rtx (insn_mode);
3705 arg1_rtx = get_memory_rtx (arg1, len);
3706 arg2_rtx = get_memory_rtx (arg2, len);
3707 arg3_rtx = expand_normal (fold_convert_loc (loc, sizetype, len));
3709 /* Set MEM_SIZE as appropriate. */
3710 if (CONST_INT_P (arg3_rtx))
3712 set_mem_size (arg1_rtx, INTVAL (arg3_rtx));
3713 set_mem_size (arg2_rtx, INTVAL (arg3_rtx));
3716 if (HAVE_cmpmemsi)
3717 insn = gen_cmpmemsi (result, arg1_rtx, arg2_rtx, arg3_rtx,
3718 GEN_INT (MIN (arg1_align, arg2_align)));
3719 else
3720 gcc_unreachable ();
3722 if (insn)
3723 emit_insn (insn);
3724 else
3725 emit_library_call_value (memcmp_libfunc, result, LCT_PURE,
3726 TYPE_MODE (integer_type_node), 3,
3727 XEXP (arg1_rtx, 0), Pmode,
3728 XEXP (arg2_rtx, 0), Pmode,
3729 convert_to_mode (TYPE_MODE (sizetype), arg3_rtx,
3730 TYPE_UNSIGNED (sizetype)),
3731 TYPE_MODE (sizetype));
3733 /* Return the value in the proper mode for this function. */
3734 mode = TYPE_MODE (TREE_TYPE (exp));
3735 if (GET_MODE (result) == mode)
3736 return result;
3737 else if (target != 0)
3739 convert_move (target, result, 0);
3740 return target;
3742 else
3743 return convert_to_mode (mode, result, 0);
3745 #endif /* HAVE_cmpmemsi. */
3747 return NULL_RTX;
3750 /* Expand expression EXP, which is a call to the strcmp builtin. Return NULL_RTX
3751 if we failed the caller should emit a normal call, otherwise try to get
3752 the result in TARGET, if convenient. */
3754 static rtx
3755 expand_builtin_strcmp (tree exp, ATTRIBUTE_UNUSED rtx target)
3757 if (!validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
3758 return NULL_RTX;
3760 #if defined HAVE_cmpstrsi || defined HAVE_cmpstrnsi
3761 if (direct_optab_handler (cmpstr_optab, SImode) != CODE_FOR_nothing
3762 || direct_optab_handler (cmpstrn_optab, SImode) != CODE_FOR_nothing)
3764 rtx arg1_rtx, arg2_rtx;
3765 rtx result, insn = NULL_RTX;
3766 tree fndecl, fn;
3767 tree arg1 = CALL_EXPR_ARG (exp, 0);
3768 tree arg2 = CALL_EXPR_ARG (exp, 1);
3770 unsigned int arg1_align = get_pointer_alignment (arg1) / BITS_PER_UNIT;
3771 unsigned int arg2_align = get_pointer_alignment (arg2) / BITS_PER_UNIT;
3773 /* If we don't have POINTER_TYPE, call the function. */
3774 if (arg1_align == 0 || arg2_align == 0)
3775 return NULL_RTX;
3777 /* Stabilize the arguments in case gen_cmpstr(n)si fail. */
3778 arg1 = builtin_save_expr (arg1);
3779 arg2 = builtin_save_expr (arg2);
3781 arg1_rtx = get_memory_rtx (arg1, NULL);
3782 arg2_rtx = get_memory_rtx (arg2, NULL);
3784 #ifdef HAVE_cmpstrsi
3785 /* Try to call cmpstrsi. */
3786 if (HAVE_cmpstrsi)
3788 enum machine_mode insn_mode
3789 = insn_data[(int) CODE_FOR_cmpstrsi].operand[0].mode;
3791 /* Make a place to write the result of the instruction. */
3792 result = target;
3793 if (! (result != 0
3794 && REG_P (result) && GET_MODE (result) == insn_mode
3795 && REGNO (result) >= FIRST_PSEUDO_REGISTER))
3796 result = gen_reg_rtx (insn_mode);
3798 insn = gen_cmpstrsi (result, arg1_rtx, arg2_rtx,
3799 GEN_INT (MIN (arg1_align, arg2_align)));
3801 #endif
3802 #ifdef HAVE_cmpstrnsi
3803 /* Try to determine at least one length and call cmpstrnsi. */
3804 if (!insn && HAVE_cmpstrnsi)
3806 tree len;
3807 rtx arg3_rtx;
3809 enum machine_mode insn_mode
3810 = insn_data[(int) CODE_FOR_cmpstrnsi].operand[0].mode;
3811 tree len1 = c_strlen (arg1, 1);
3812 tree len2 = c_strlen (arg2, 1);
3814 if (len1)
3815 len1 = size_binop (PLUS_EXPR, ssize_int (1), len1);
3816 if (len2)
3817 len2 = size_binop (PLUS_EXPR, ssize_int (1), len2);
3819 /* If we don't have a constant length for the first, use the length
3820 of the second, if we know it. We don't require a constant for
3821 this case; some cost analysis could be done if both are available
3822 but neither is constant. For now, assume they're equally cheap,
3823 unless one has side effects. If both strings have constant lengths,
3824 use the smaller. */
3826 if (!len1)
3827 len = len2;
3828 else if (!len2)
3829 len = len1;
3830 else if (TREE_SIDE_EFFECTS (len1))
3831 len = len2;
3832 else if (TREE_SIDE_EFFECTS (len2))
3833 len = len1;
3834 else if (TREE_CODE (len1) != INTEGER_CST)
3835 len = len2;
3836 else if (TREE_CODE (len2) != INTEGER_CST)
3837 len = len1;
3838 else if (tree_int_cst_lt (len1, len2))
3839 len = len1;
3840 else
3841 len = len2;
3843 /* If both arguments have side effects, we cannot optimize. */
3844 if (!len || TREE_SIDE_EFFECTS (len))
3845 goto do_libcall;
3847 arg3_rtx = expand_normal (len);
3849 /* Make a place to write the result of the instruction. */
3850 result = target;
3851 if (! (result != 0
3852 && REG_P (result) && GET_MODE (result) == insn_mode
3853 && REGNO (result) >= FIRST_PSEUDO_REGISTER))
3854 result = gen_reg_rtx (insn_mode);
3856 insn = gen_cmpstrnsi (result, arg1_rtx, arg2_rtx, arg3_rtx,
3857 GEN_INT (MIN (arg1_align, arg2_align)));
3859 #endif
3861 if (insn)
3863 enum machine_mode mode;
3864 emit_insn (insn);
3866 /* Return the value in the proper mode for this function. */
3867 mode = TYPE_MODE (TREE_TYPE (exp));
3868 if (GET_MODE (result) == mode)
3869 return result;
3870 if (target == 0)
3871 return convert_to_mode (mode, result, 0);
3872 convert_move (target, result, 0);
3873 return target;
3876 /* Expand the library call ourselves using a stabilized argument
3877 list to avoid re-evaluating the function's arguments twice. */
3878 #ifdef HAVE_cmpstrnsi
3879 do_libcall:
3880 #endif
3881 fndecl = get_callee_fndecl (exp);
3882 fn = build_call_nofold_loc (EXPR_LOCATION (exp), fndecl, 2, arg1, arg2);
3883 gcc_assert (TREE_CODE (fn) == CALL_EXPR);
3884 CALL_EXPR_TAILCALL (fn) = CALL_EXPR_TAILCALL (exp);
3885 return expand_call (fn, target, target == const0_rtx);
3887 #endif
3888 return NULL_RTX;
3891 /* Expand expression EXP, which is a call to the strncmp builtin. Return
3892 NULL_RTX if we failed the caller should emit a normal call, otherwise try to get
3893 the result in TARGET, if convenient. */
3895 static rtx
3896 expand_builtin_strncmp (tree exp, ATTRIBUTE_UNUSED rtx target,
3897 ATTRIBUTE_UNUSED enum machine_mode mode)
3899 location_t loc ATTRIBUTE_UNUSED = EXPR_LOCATION (exp);
3901 if (!validate_arglist (exp,
3902 POINTER_TYPE, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3903 return NULL_RTX;
3905 /* If c_strlen can determine an expression for one of the string
3906 lengths, and it doesn't have side effects, then emit cmpstrnsi
3907 using length MIN(strlen(string)+1, arg3). */
3908 #ifdef HAVE_cmpstrnsi
3909 if (HAVE_cmpstrnsi)
3911 tree len, len1, len2;
3912 rtx arg1_rtx, arg2_rtx, arg3_rtx;
3913 rtx result, insn;
3914 tree fndecl, fn;
3915 tree arg1 = CALL_EXPR_ARG (exp, 0);
3916 tree arg2 = CALL_EXPR_ARG (exp, 1);
3917 tree arg3 = CALL_EXPR_ARG (exp, 2);
3919 unsigned int arg1_align = get_pointer_alignment (arg1) / BITS_PER_UNIT;
3920 unsigned int arg2_align = get_pointer_alignment (arg2) / BITS_PER_UNIT;
3921 enum machine_mode insn_mode
3922 = insn_data[(int) CODE_FOR_cmpstrnsi].operand[0].mode;
3924 len1 = c_strlen (arg1, 1);
3925 len2 = c_strlen (arg2, 1);
3927 if (len1)
3928 len1 = size_binop_loc (loc, PLUS_EXPR, ssize_int (1), len1);
3929 if (len2)
3930 len2 = size_binop_loc (loc, PLUS_EXPR, ssize_int (1), len2);
3932 /* If we don't have a constant length for the first, use the length
3933 of the second, if we know it. We don't require a constant for
3934 this case; some cost analysis could be done if both are available
3935 but neither is constant. For now, assume they're equally cheap,
3936 unless one has side effects. If both strings have constant lengths,
3937 use the smaller. */
3939 if (!len1)
3940 len = len2;
3941 else if (!len2)
3942 len = len1;
3943 else if (TREE_SIDE_EFFECTS (len1))
3944 len = len2;
3945 else if (TREE_SIDE_EFFECTS (len2))
3946 len = len1;
3947 else if (TREE_CODE (len1) != INTEGER_CST)
3948 len = len2;
3949 else if (TREE_CODE (len2) != INTEGER_CST)
3950 len = len1;
3951 else if (tree_int_cst_lt (len1, len2))
3952 len = len1;
3953 else
3954 len = len2;
3956 /* If both arguments have side effects, we cannot optimize. */
3957 if (!len || TREE_SIDE_EFFECTS (len))
3958 return NULL_RTX;
3960 /* The actual new length parameter is MIN(len,arg3). */
3961 len = fold_build2_loc (loc, MIN_EXPR, TREE_TYPE (len), len,
3962 fold_convert_loc (loc, TREE_TYPE (len), arg3));
3964 /* If we don't have POINTER_TYPE, call the function. */
3965 if (arg1_align == 0 || arg2_align == 0)
3966 return NULL_RTX;
3968 /* Make a place to write the result of the instruction. */
3969 result = target;
3970 if (! (result != 0
3971 && REG_P (result) && GET_MODE (result) == insn_mode
3972 && REGNO (result) >= FIRST_PSEUDO_REGISTER))
3973 result = gen_reg_rtx (insn_mode);
3975 /* Stabilize the arguments in case gen_cmpstrnsi fails. */
3976 arg1 = builtin_save_expr (arg1);
3977 arg2 = builtin_save_expr (arg2);
3978 len = builtin_save_expr (len);
3980 arg1_rtx = get_memory_rtx (arg1, len);
3981 arg2_rtx = get_memory_rtx (arg2, len);
3982 arg3_rtx = expand_normal (len);
3983 insn = gen_cmpstrnsi (result, arg1_rtx, arg2_rtx, arg3_rtx,
3984 GEN_INT (MIN (arg1_align, arg2_align)));
3985 if (insn)
3987 emit_insn (insn);
3989 /* Return the value in the proper mode for this function. */
3990 mode = TYPE_MODE (TREE_TYPE (exp));
3991 if (GET_MODE (result) == mode)
3992 return result;
3993 if (target == 0)
3994 return convert_to_mode (mode, result, 0);
3995 convert_move (target, result, 0);
3996 return target;
3999 /* Expand the library call ourselves using a stabilized argument
4000 list to avoid re-evaluating the function's arguments twice. */
4001 fndecl = get_callee_fndecl (exp);
4002 fn = build_call_nofold_loc (EXPR_LOCATION (exp), fndecl, 3,
4003 arg1, arg2, len);
4004 gcc_assert (TREE_CODE (fn) == CALL_EXPR);
4005 CALL_EXPR_TAILCALL (fn) = CALL_EXPR_TAILCALL (exp);
4006 return expand_call (fn, target, target == const0_rtx);
4008 #endif
4009 return NULL_RTX;
4012 /* Expand a call to __builtin_saveregs, generating the result in TARGET,
4013 if that's convenient. */
4016 expand_builtin_saveregs (void)
4018 rtx val, seq;
4020 /* Don't do __builtin_saveregs more than once in a function.
4021 Save the result of the first call and reuse it. */
4022 if (saveregs_value != 0)
4023 return saveregs_value;
4025 /* When this function is called, it means that registers must be
4026 saved on entry to this function. So we migrate the call to the
4027 first insn of this function. */
4029 start_sequence ();
4031 /* Do whatever the machine needs done in this case. */
4032 val = targetm.calls.expand_builtin_saveregs ();
4034 seq = get_insns ();
4035 end_sequence ();
4037 saveregs_value = val;
4039 /* Put the insns after the NOTE that starts the function. If this
4040 is inside a start_sequence, make the outer-level insn chain current, so
4041 the code is placed at the start of the function. */
4042 push_topmost_sequence ();
4043 emit_insn_after (seq, entry_of_function ());
4044 pop_topmost_sequence ();
4046 return val;
4049 /* Expand a call to __builtin_next_arg. */
4051 static rtx
4052 expand_builtin_next_arg (void)
4054 /* Checking arguments is already done in fold_builtin_next_arg
4055 that must be called before this function. */
4056 return expand_binop (ptr_mode, add_optab,
4057 crtl->args.internal_arg_pointer,
4058 crtl->args.arg_offset_rtx,
4059 NULL_RTX, 0, OPTAB_LIB_WIDEN);
4062 /* Make it easier for the backends by protecting the valist argument
4063 from multiple evaluations. */
4065 static tree
4066 stabilize_va_list_loc (location_t loc, tree valist, int needs_lvalue)
4068 tree vatype = targetm.canonical_va_list_type (TREE_TYPE (valist));
4070 /* The current way of determining the type of valist is completely
4071 bogus. We should have the information on the va builtin instead. */
4072 if (!vatype)
4073 vatype = targetm.fn_abi_va_list (cfun->decl);
4075 if (TREE_CODE (vatype) == ARRAY_TYPE)
4077 if (TREE_SIDE_EFFECTS (valist))
4078 valist = save_expr (valist);
4080 /* For this case, the backends will be expecting a pointer to
4081 vatype, but it's possible we've actually been given an array
4082 (an actual TARGET_CANONICAL_VA_LIST_TYPE (valist)).
4083 So fix it. */
4084 if (TREE_CODE (TREE_TYPE (valist)) == ARRAY_TYPE)
4086 tree p1 = build_pointer_type (TREE_TYPE (vatype));
4087 valist = build_fold_addr_expr_with_type_loc (loc, valist, p1);
4090 else
4092 tree pt = build_pointer_type (vatype);
4094 if (! needs_lvalue)
4096 if (! TREE_SIDE_EFFECTS (valist))
4097 return valist;
4099 valist = fold_build1_loc (loc, ADDR_EXPR, pt, valist);
4100 TREE_SIDE_EFFECTS (valist) = 1;
4103 if (TREE_SIDE_EFFECTS (valist))
4104 valist = save_expr (valist);
4105 valist = fold_build2_loc (loc, MEM_REF,
4106 vatype, valist, build_int_cst (pt, 0));
4109 return valist;
4112 /* The "standard" definition of va_list is void*. */
4114 tree
4115 std_build_builtin_va_list (void)
4117 return ptr_type_node;
4120 /* The "standard" abi va_list is va_list_type_node. */
4122 tree
4123 std_fn_abi_va_list (tree fndecl ATTRIBUTE_UNUSED)
4125 return va_list_type_node;
4128 /* The "standard" type of va_list is va_list_type_node. */
4130 tree
4131 std_canonical_va_list_type (tree type)
4133 tree wtype, htype;
4135 if (INDIRECT_REF_P (type))
4136 type = TREE_TYPE (type);
4137 else if (POINTER_TYPE_P (type) && POINTER_TYPE_P (TREE_TYPE(type)))
4138 type = TREE_TYPE (type);
4139 wtype = va_list_type_node;
4140 htype = type;
4141 /* Treat structure va_list types. */
4142 if (TREE_CODE (wtype) == RECORD_TYPE && POINTER_TYPE_P (htype))
4143 htype = TREE_TYPE (htype);
4144 else if (TREE_CODE (wtype) == ARRAY_TYPE)
4146 /* If va_list is an array type, the argument may have decayed
4147 to a pointer type, e.g. by being passed to another function.
4148 In that case, unwrap both types so that we can compare the
4149 underlying records. */
4150 if (TREE_CODE (htype) == ARRAY_TYPE
4151 || POINTER_TYPE_P (htype))
4153 wtype = TREE_TYPE (wtype);
4154 htype = TREE_TYPE (htype);
4157 if (TYPE_MAIN_VARIANT (wtype) == TYPE_MAIN_VARIANT (htype))
4158 return va_list_type_node;
4160 return NULL_TREE;
4163 /* The "standard" implementation of va_start: just assign `nextarg' to
4164 the variable. */
4166 void
4167 std_expand_builtin_va_start (tree valist, rtx nextarg)
4169 rtx va_r = expand_expr (valist, NULL_RTX, VOIDmode, EXPAND_WRITE);
4170 convert_move (va_r, nextarg, 0);
4173 /* Expand EXP, a call to __builtin_va_start. */
4175 static rtx
4176 expand_builtin_va_start (tree exp)
4178 rtx nextarg;
4179 tree valist;
4180 location_t loc = EXPR_LOCATION (exp);
4182 if (call_expr_nargs (exp) < 2)
4184 error_at (loc, "too few arguments to function %<va_start%>");
4185 return const0_rtx;
4188 if (fold_builtin_next_arg (exp, true))
4189 return const0_rtx;
4191 nextarg = expand_builtin_next_arg ();
4192 valist = stabilize_va_list_loc (loc, CALL_EXPR_ARG (exp, 0), 1);
4194 if (targetm.expand_builtin_va_start)
4195 targetm.expand_builtin_va_start (valist, nextarg);
4196 else
4197 std_expand_builtin_va_start (valist, nextarg);
4199 return const0_rtx;
4202 /* The "standard" implementation of va_arg: read the value from the
4203 current (padded) address and increment by the (padded) size. */
4205 tree
4206 std_gimplify_va_arg_expr (tree valist, tree type, gimple_seq *pre_p,
4207 gimple_seq *post_p)
4209 tree addr, t, type_size, rounded_size, valist_tmp;
4210 unsigned HOST_WIDE_INT align, boundary;
4211 bool indirect;
4213 #ifdef ARGS_GROW_DOWNWARD
4214 /* All of the alignment and movement below is for args-grow-up machines.
4215 As of 2004, there are only 3 ARGS_GROW_DOWNWARD targets, and they all
4216 implement their own specialized gimplify_va_arg_expr routines. */
4217 gcc_unreachable ();
4218 #endif
4220 indirect = pass_by_reference (NULL, TYPE_MODE (type), type, false);
4221 if (indirect)
4222 type = build_pointer_type (type);
4224 align = PARM_BOUNDARY / BITS_PER_UNIT;
4225 boundary = targetm.calls.function_arg_boundary (TYPE_MODE (type), type);
4227 /* When we align parameter on stack for caller, if the parameter
4228 alignment is beyond MAX_SUPPORTED_STACK_ALIGNMENT, it will be
4229 aligned at MAX_SUPPORTED_STACK_ALIGNMENT. We will match callee
4230 here with caller. */
4231 if (boundary > MAX_SUPPORTED_STACK_ALIGNMENT)
4232 boundary = MAX_SUPPORTED_STACK_ALIGNMENT;
4234 boundary /= BITS_PER_UNIT;
4236 /* Hoist the valist value into a temporary for the moment. */
4237 valist_tmp = get_initialized_tmp_var (valist, pre_p, NULL);
4239 /* va_list pointer is aligned to PARM_BOUNDARY. If argument actually
4240 requires greater alignment, we must perform dynamic alignment. */
4241 if (boundary > align
4242 && !integer_zerop (TYPE_SIZE (type)))
4244 t = build2 (MODIFY_EXPR, TREE_TYPE (valist), valist_tmp,
4245 fold_build_pointer_plus_hwi (valist_tmp, boundary - 1));
4246 gimplify_and_add (t, pre_p);
4248 t = build2 (MODIFY_EXPR, TREE_TYPE (valist), valist_tmp,
4249 fold_build2 (BIT_AND_EXPR, TREE_TYPE (valist),
4250 valist_tmp,
4251 build_int_cst (TREE_TYPE (valist), -boundary)));
4252 gimplify_and_add (t, pre_p);
4254 else
4255 boundary = align;
4257 /* If the actual alignment is less than the alignment of the type,
4258 adjust the type accordingly so that we don't assume strict alignment
4259 when dereferencing the pointer. */
4260 boundary *= BITS_PER_UNIT;
4261 if (boundary < TYPE_ALIGN (type))
4263 type = build_variant_type_copy (type);
4264 TYPE_ALIGN (type) = boundary;
4267 /* Compute the rounded size of the type. */
4268 type_size = size_in_bytes (type);
4269 rounded_size = round_up (type_size, align);
4271 /* Reduce rounded_size so it's sharable with the postqueue. */
4272 gimplify_expr (&rounded_size, pre_p, post_p, is_gimple_val, fb_rvalue);
4274 /* Get AP. */
4275 addr = valist_tmp;
4276 if (PAD_VARARGS_DOWN && !integer_zerop (rounded_size))
4278 /* Small args are padded downward. */
4279 t = fold_build2_loc (input_location, GT_EXPR, sizetype,
4280 rounded_size, size_int (align));
4281 t = fold_build3 (COND_EXPR, sizetype, t, size_zero_node,
4282 size_binop (MINUS_EXPR, rounded_size, type_size));
4283 addr = fold_build_pointer_plus (addr, t);
4286 /* Compute new value for AP. */
4287 t = fold_build_pointer_plus (valist_tmp, rounded_size);
4288 t = build2 (MODIFY_EXPR, TREE_TYPE (valist), valist, t);
4289 gimplify_and_add (t, pre_p);
4291 addr = fold_convert (build_pointer_type (type), addr);
4293 if (indirect)
4294 addr = build_va_arg_indirect_ref (addr);
4296 return build_va_arg_indirect_ref (addr);
4299 /* Build an indirect-ref expression over the given TREE, which represents a
4300 piece of a va_arg() expansion. */
4301 tree
4302 build_va_arg_indirect_ref (tree addr)
4304 addr = build_simple_mem_ref_loc (EXPR_LOCATION (addr), addr);
4306 if (flag_mudflap) /* Don't instrument va_arg INDIRECT_REF. */
4307 mf_mark (addr);
4309 return addr;
4312 /* Return a dummy expression of type TYPE in order to keep going after an
4313 error. */
4315 static tree
4316 dummy_object (tree type)
4318 tree t = build_int_cst (build_pointer_type (type), 0);
4319 return build2 (MEM_REF, type, t, t);
4322 /* Gimplify __builtin_va_arg, aka VA_ARG_EXPR, which is not really a
4323 builtin function, but a very special sort of operator. */
4325 enum gimplify_status
4326 gimplify_va_arg_expr (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p)
4328 tree promoted_type, have_va_type;
4329 tree valist = TREE_OPERAND (*expr_p, 0);
4330 tree type = TREE_TYPE (*expr_p);
4331 tree t;
4332 location_t loc = EXPR_LOCATION (*expr_p);
4334 /* Verify that valist is of the proper type. */
4335 have_va_type = TREE_TYPE (valist);
4336 if (have_va_type == error_mark_node)
4337 return GS_ERROR;
4338 have_va_type = targetm.canonical_va_list_type (have_va_type);
4340 if (have_va_type == NULL_TREE)
4342 error_at (loc, "first argument to %<va_arg%> not of type %<va_list%>");
4343 return GS_ERROR;
4346 /* Generate a diagnostic for requesting data of a type that cannot
4347 be passed through `...' due to type promotion at the call site. */
4348 if ((promoted_type = lang_hooks.types.type_promotes_to (type))
4349 != type)
4351 static bool gave_help;
4352 bool warned;
4354 /* Unfortunately, this is merely undefined, rather than a constraint
4355 violation, so we cannot make this an error. If this call is never
4356 executed, the program is still strictly conforming. */
4357 warned = warning_at (loc, 0,
4358 "%qT is promoted to %qT when passed through %<...%>",
4359 type, promoted_type);
4360 if (!gave_help && warned)
4362 gave_help = true;
4363 inform (loc, "(so you should pass %qT not %qT to %<va_arg%>)",
4364 promoted_type, type);
4367 /* We can, however, treat "undefined" any way we please.
4368 Call abort to encourage the user to fix the program. */
4369 if (warned)
4370 inform (loc, "if this code is reached, the program will abort");
4371 /* Before the abort, allow the evaluation of the va_list
4372 expression to exit or longjmp. */
4373 gimplify_and_add (valist, pre_p);
4374 t = build_call_expr_loc (loc,
4375 builtin_decl_implicit (BUILT_IN_TRAP), 0);
4376 gimplify_and_add (t, pre_p);
4378 /* This is dead code, but go ahead and finish so that the
4379 mode of the result comes out right. */
4380 *expr_p = dummy_object (type);
4381 return GS_ALL_DONE;
4383 else
4385 /* Make it easier for the backends by protecting the valist argument
4386 from multiple evaluations. */
4387 if (TREE_CODE (have_va_type) == ARRAY_TYPE)
4389 /* For this case, the backends will be expecting a pointer to
4390 TREE_TYPE (abi), but it's possible we've
4391 actually been given an array (an actual TARGET_FN_ABI_VA_LIST).
4392 So fix it. */
4393 if (TREE_CODE (TREE_TYPE (valist)) == ARRAY_TYPE)
4395 tree p1 = build_pointer_type (TREE_TYPE (have_va_type));
4396 valist = fold_convert_loc (loc, p1,
4397 build_fold_addr_expr_loc (loc, valist));
4400 gimplify_expr (&valist, pre_p, post_p, is_gimple_val, fb_rvalue);
4402 else
4403 gimplify_expr (&valist, pre_p, post_p, is_gimple_min_lval, fb_lvalue);
4405 if (!targetm.gimplify_va_arg_expr)
4406 /* FIXME: Once most targets are converted we should merely
4407 assert this is non-null. */
4408 return GS_ALL_DONE;
4410 *expr_p = targetm.gimplify_va_arg_expr (valist, type, pre_p, post_p);
4411 return GS_OK;
4415 /* Expand EXP, a call to __builtin_va_end. */
4417 static rtx
4418 expand_builtin_va_end (tree exp)
4420 tree valist = CALL_EXPR_ARG (exp, 0);
4422 /* Evaluate for side effects, if needed. I hate macros that don't
4423 do that. */
4424 if (TREE_SIDE_EFFECTS (valist))
4425 expand_expr (valist, const0_rtx, VOIDmode, EXPAND_NORMAL);
4427 return const0_rtx;
4430 /* Expand EXP, a call to __builtin_va_copy. We do this as a
4431 builtin rather than just as an assignment in stdarg.h because of the
4432 nastiness of array-type va_list types. */
4434 static rtx
4435 expand_builtin_va_copy (tree exp)
4437 tree dst, src, t;
4438 location_t loc = EXPR_LOCATION (exp);
4440 dst = CALL_EXPR_ARG (exp, 0);
4441 src = CALL_EXPR_ARG (exp, 1);
4443 dst = stabilize_va_list_loc (loc, dst, 1);
4444 src = stabilize_va_list_loc (loc, src, 0);
4446 gcc_assert (cfun != NULL && cfun->decl != NULL_TREE);
4448 if (TREE_CODE (targetm.fn_abi_va_list (cfun->decl)) != ARRAY_TYPE)
4450 t = build2 (MODIFY_EXPR, targetm.fn_abi_va_list (cfun->decl), dst, src);
4451 TREE_SIDE_EFFECTS (t) = 1;
4452 expand_expr (t, const0_rtx, VOIDmode, EXPAND_NORMAL);
4454 else
4456 rtx dstb, srcb, size;
4458 /* Evaluate to pointers. */
4459 dstb = expand_expr (dst, NULL_RTX, Pmode, EXPAND_NORMAL);
4460 srcb = expand_expr (src, NULL_RTX, Pmode, EXPAND_NORMAL);
4461 size = expand_expr (TYPE_SIZE_UNIT (targetm.fn_abi_va_list (cfun->decl)),
4462 NULL_RTX, VOIDmode, EXPAND_NORMAL);
4464 dstb = convert_memory_address (Pmode, dstb);
4465 srcb = convert_memory_address (Pmode, srcb);
4467 /* "Dereference" to BLKmode memories. */
4468 dstb = gen_rtx_MEM (BLKmode, dstb);
4469 set_mem_alias_set (dstb, get_alias_set (TREE_TYPE (TREE_TYPE (dst))));
4470 set_mem_align (dstb, TYPE_ALIGN (targetm.fn_abi_va_list (cfun->decl)));
4471 srcb = gen_rtx_MEM (BLKmode, srcb);
4472 set_mem_alias_set (srcb, get_alias_set (TREE_TYPE (TREE_TYPE (src))));
4473 set_mem_align (srcb, TYPE_ALIGN (targetm.fn_abi_va_list (cfun->decl)));
4475 /* Copy. */
4476 emit_block_move (dstb, srcb, size, BLOCK_OP_NORMAL);
4479 return const0_rtx;
4482 /* Expand a call to one of the builtin functions __builtin_frame_address or
4483 __builtin_return_address. */
4485 static rtx
4486 expand_builtin_frame_address (tree fndecl, tree exp)
4488 /* The argument must be a nonnegative integer constant.
4489 It counts the number of frames to scan up the stack.
4490 The value is the return address saved in that frame. */
4491 if (call_expr_nargs (exp) == 0)
4492 /* Warning about missing arg was already issued. */
4493 return const0_rtx;
4494 else if (! host_integerp (CALL_EXPR_ARG (exp, 0), 1))
4496 if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_FRAME_ADDRESS)
4497 error ("invalid argument to %<__builtin_frame_address%>");
4498 else
4499 error ("invalid argument to %<__builtin_return_address%>");
4500 return const0_rtx;
4502 else
4504 rtx tem
4505 = expand_builtin_return_addr (DECL_FUNCTION_CODE (fndecl),
4506 tree_low_cst (CALL_EXPR_ARG (exp, 0), 1));
4508 /* Some ports cannot access arbitrary stack frames. */
4509 if (tem == NULL)
4511 if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_FRAME_ADDRESS)
4512 warning (0, "unsupported argument to %<__builtin_frame_address%>");
4513 else
4514 warning (0, "unsupported argument to %<__builtin_return_address%>");
4515 return const0_rtx;
4518 /* For __builtin_frame_address, return what we've got. */
4519 if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_FRAME_ADDRESS)
4520 return tem;
4522 if (!REG_P (tem)
4523 && ! CONSTANT_P (tem))
4524 tem = copy_addr_to_reg (tem);
4525 return tem;
4529 /* Expand EXP, a call to the alloca builtin. Return NULL_RTX if we
4530 failed and the caller should emit a normal call. CANNOT_ACCUMULATE
4531 is the same as for allocate_dynamic_stack_space. */
4533 static rtx
4534 expand_builtin_alloca (tree exp, bool cannot_accumulate)
4536 rtx op0;
4537 rtx result;
4538 bool valid_arglist;
4539 unsigned int align;
4540 bool alloca_with_align = (DECL_FUNCTION_CODE (get_callee_fndecl (exp))
4541 == BUILT_IN_ALLOCA_WITH_ALIGN);
4543 /* Emit normal call if we use mudflap. */
4544 if (flag_mudflap)
4545 return NULL_RTX;
4547 valid_arglist
4548 = (alloca_with_align
4549 ? validate_arglist (exp, INTEGER_TYPE, INTEGER_TYPE, VOID_TYPE)
4550 : validate_arglist (exp, INTEGER_TYPE, VOID_TYPE));
4552 if (!valid_arglist)
4553 return NULL_RTX;
4555 /* Compute the argument. */
4556 op0 = expand_normal (CALL_EXPR_ARG (exp, 0));
4558 /* Compute the alignment. */
4559 align = (alloca_with_align
4560 ? TREE_INT_CST_LOW (CALL_EXPR_ARG (exp, 1))
4561 : BIGGEST_ALIGNMENT);
4563 /* Allocate the desired space. */
4564 result = allocate_dynamic_stack_space (op0, 0, align, cannot_accumulate);
4565 result = convert_memory_address (ptr_mode, result);
4567 return result;
4570 /* Expand a call to bswap builtin in EXP.
4571 Return NULL_RTX if a normal call should be emitted rather than expanding the
4572 function in-line. If convenient, the result should be placed in TARGET.
4573 SUBTARGET may be used as the target for computing one of EXP's operands. */
4575 static rtx
4576 expand_builtin_bswap (enum machine_mode target_mode, tree exp, rtx target,
4577 rtx subtarget)
4579 tree arg;
4580 rtx op0;
4582 if (!validate_arglist (exp, INTEGER_TYPE, VOID_TYPE))
4583 return NULL_RTX;
4585 arg = CALL_EXPR_ARG (exp, 0);
4586 op0 = expand_expr (arg,
4587 subtarget && GET_MODE (subtarget) == target_mode
4588 ? subtarget : NULL_RTX,
4589 target_mode, EXPAND_NORMAL);
4590 if (GET_MODE (op0) != target_mode)
4591 op0 = convert_to_mode (target_mode, op0, 1);
4593 target = expand_unop (target_mode, bswap_optab, op0, target, 1);
4595 gcc_assert (target);
4597 return convert_to_mode (target_mode, target, 1);
4600 /* Expand a call to a unary builtin in EXP.
4601 Return NULL_RTX if a normal call should be emitted rather than expanding the
4602 function in-line. If convenient, the result should be placed in TARGET.
4603 SUBTARGET may be used as the target for computing one of EXP's operands. */
4605 static rtx
4606 expand_builtin_unop (enum machine_mode target_mode, tree exp, rtx target,
4607 rtx subtarget, optab op_optab)
4609 rtx op0;
4611 if (!validate_arglist (exp, INTEGER_TYPE, VOID_TYPE))
4612 return NULL_RTX;
4614 /* Compute the argument. */
4615 op0 = expand_expr (CALL_EXPR_ARG (exp, 0),
4616 (subtarget
4617 && (TYPE_MODE (TREE_TYPE (CALL_EXPR_ARG (exp, 0)))
4618 == GET_MODE (subtarget))) ? subtarget : NULL_RTX,
4619 VOIDmode, EXPAND_NORMAL);
4620 /* Compute op, into TARGET if possible.
4621 Set TARGET to wherever the result comes back. */
4622 target = expand_unop (TYPE_MODE (TREE_TYPE (CALL_EXPR_ARG (exp, 0))),
4623 op_optab, op0, target, op_optab != clrsb_optab);
4624 gcc_assert (target);
4626 return convert_to_mode (target_mode, target, 0);
4629 /* Expand a call to __builtin_expect. We just return our argument
4630 as the builtin_expect semantic should've been already executed by
4631 tree branch prediction pass. */
4633 static rtx
4634 expand_builtin_expect (tree exp, rtx target)
4636 tree arg;
4638 if (call_expr_nargs (exp) < 2)
4639 return const0_rtx;
4640 arg = CALL_EXPR_ARG (exp, 0);
4642 target = expand_expr (arg, target, VOIDmode, EXPAND_NORMAL);
4643 /* When guessing was done, the hints should be already stripped away. */
4644 gcc_assert (!flag_guess_branch_prob
4645 || optimize == 0 || seen_error ());
4646 return target;
4649 /* Expand a call to __builtin_assume_aligned. We just return our first
4650 argument as the builtin_assume_aligned semantic should've been already
4651 executed by CCP. */
4653 static rtx
4654 expand_builtin_assume_aligned (tree exp, rtx target)
4656 if (call_expr_nargs (exp) < 2)
4657 return const0_rtx;
4658 target = expand_expr (CALL_EXPR_ARG (exp, 0), target, VOIDmode,
4659 EXPAND_NORMAL);
4660 gcc_assert (!TREE_SIDE_EFFECTS (CALL_EXPR_ARG (exp, 1))
4661 && (call_expr_nargs (exp) < 3
4662 || !TREE_SIDE_EFFECTS (CALL_EXPR_ARG (exp, 2))));
4663 return target;
4666 void
4667 expand_builtin_trap (void)
4669 #ifdef HAVE_trap
4670 if (HAVE_trap)
4672 rtx insn = emit_insn (gen_trap ());
4673 /* For trap insns when not accumulating outgoing args force
4674 REG_ARGS_SIZE note to prevent crossjumping of calls with
4675 different args sizes. */
4676 if (!ACCUMULATE_OUTGOING_ARGS)
4677 add_reg_note (insn, REG_ARGS_SIZE, GEN_INT (stack_pointer_delta));
4679 else
4680 #endif
4681 emit_library_call (abort_libfunc, LCT_NORETURN, VOIDmode, 0);
4682 emit_barrier ();
4685 /* Expand a call to __builtin_unreachable. We do nothing except emit
4686 a barrier saying that control flow will not pass here.
4688 It is the responsibility of the program being compiled to ensure
4689 that control flow does never reach __builtin_unreachable. */
4690 static void
4691 expand_builtin_unreachable (void)
4693 emit_barrier ();
4696 /* Expand EXP, a call to fabs, fabsf or fabsl.
4697 Return NULL_RTX if a normal call should be emitted rather than expanding
4698 the function inline. If convenient, the result should be placed
4699 in TARGET. SUBTARGET may be used as the target for computing
4700 the operand. */
4702 static rtx
4703 expand_builtin_fabs (tree exp, rtx target, rtx subtarget)
4705 enum machine_mode mode;
4706 tree arg;
4707 rtx op0;
4709 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
4710 return NULL_RTX;
4712 arg = CALL_EXPR_ARG (exp, 0);
4713 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
4714 mode = TYPE_MODE (TREE_TYPE (arg));
4715 op0 = expand_expr (arg, subtarget, VOIDmode, EXPAND_NORMAL);
4716 return expand_abs (mode, op0, target, 0, safe_from_p (target, arg, 1));
4719 /* Expand EXP, a call to copysign, copysignf, or copysignl.
4720 Return NULL is a normal call should be emitted rather than expanding the
4721 function inline. If convenient, the result should be placed in TARGET.
4722 SUBTARGET may be used as the target for computing the operand. */
4724 static rtx
4725 expand_builtin_copysign (tree exp, rtx target, rtx subtarget)
4727 rtx op0, op1;
4728 tree arg;
4730 if (!validate_arglist (exp, REAL_TYPE, REAL_TYPE, VOID_TYPE))
4731 return NULL_RTX;
4733 arg = CALL_EXPR_ARG (exp, 0);
4734 op0 = expand_expr (arg, subtarget, VOIDmode, EXPAND_NORMAL);
4736 arg = CALL_EXPR_ARG (exp, 1);
4737 op1 = expand_normal (arg);
4739 return expand_copysign (op0, op1, target);
4742 /* Create a new constant string literal and return a char* pointer to it.
4743 The STRING_CST value is the LEN characters at STR. */
4744 tree
4745 build_string_literal (int len, const char *str)
4747 tree t, elem, index, type;
4749 t = build_string (len, str);
4750 elem = build_type_variant (char_type_node, 1, 0);
4751 index = build_index_type (size_int (len - 1));
4752 type = build_array_type (elem, index);
4753 TREE_TYPE (t) = type;
4754 TREE_CONSTANT (t) = 1;
4755 TREE_READONLY (t) = 1;
4756 TREE_STATIC (t) = 1;
4758 type = build_pointer_type (elem);
4759 t = build1 (ADDR_EXPR, type,
4760 build4 (ARRAY_REF, elem,
4761 t, integer_zero_node, NULL_TREE, NULL_TREE));
4762 return t;
4765 /* Expand a call to __builtin___clear_cache. */
4767 static rtx
4768 expand_builtin___clear_cache (tree exp ATTRIBUTE_UNUSED)
4770 #ifndef HAVE_clear_cache
4771 #ifdef CLEAR_INSN_CACHE
4772 /* There is no "clear_cache" insn, and __clear_cache() in libgcc
4773 does something. Just do the default expansion to a call to
4774 __clear_cache(). */
4775 return NULL_RTX;
4776 #else
4777 /* There is no "clear_cache" insn, and __clear_cache() in libgcc
4778 does nothing. There is no need to call it. Do nothing. */
4779 return const0_rtx;
4780 #endif /* CLEAR_INSN_CACHE */
4781 #else
4782 /* We have a "clear_cache" insn, and it will handle everything. */
4783 tree begin, end;
4784 rtx begin_rtx, end_rtx;
4786 /* We must not expand to a library call. If we did, any
4787 fallback library function in libgcc that might contain a call to
4788 __builtin___clear_cache() would recurse infinitely. */
4789 if (!validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
4791 error ("both arguments to %<__builtin___clear_cache%> must be pointers");
4792 return const0_rtx;
4795 if (HAVE_clear_cache)
4797 struct expand_operand ops[2];
4799 begin = CALL_EXPR_ARG (exp, 0);
4800 begin_rtx = expand_expr (begin, NULL_RTX, Pmode, EXPAND_NORMAL);
4802 end = CALL_EXPR_ARG (exp, 1);
4803 end_rtx = expand_expr (end, NULL_RTX, Pmode, EXPAND_NORMAL);
4805 create_address_operand (&ops[0], begin_rtx);
4806 create_address_operand (&ops[1], end_rtx);
4807 if (maybe_expand_insn (CODE_FOR_clear_cache, 2, ops))
4808 return const0_rtx;
4810 return const0_rtx;
4811 #endif /* HAVE_clear_cache */
4814 /* Given a trampoline address, make sure it satisfies TRAMPOLINE_ALIGNMENT. */
4816 static rtx
4817 round_trampoline_addr (rtx tramp)
4819 rtx temp, addend, mask;
4821 /* If we don't need too much alignment, we'll have been guaranteed
4822 proper alignment by get_trampoline_type. */
4823 if (TRAMPOLINE_ALIGNMENT <= STACK_BOUNDARY)
4824 return tramp;
4826 /* Round address up to desired boundary. */
4827 temp = gen_reg_rtx (Pmode);
4828 addend = GEN_INT (TRAMPOLINE_ALIGNMENT / BITS_PER_UNIT - 1);
4829 mask = GEN_INT (-TRAMPOLINE_ALIGNMENT / BITS_PER_UNIT);
4831 temp = expand_simple_binop (Pmode, PLUS, tramp, addend,
4832 temp, 0, OPTAB_LIB_WIDEN);
4833 tramp = expand_simple_binop (Pmode, AND, temp, mask,
4834 temp, 0, OPTAB_LIB_WIDEN);
4836 return tramp;
4839 static rtx
4840 expand_builtin_init_trampoline (tree exp, bool onstack)
4842 tree t_tramp, t_func, t_chain;
4843 rtx m_tramp, r_tramp, r_chain, tmp;
4845 if (!validate_arglist (exp, POINTER_TYPE, POINTER_TYPE,
4846 POINTER_TYPE, VOID_TYPE))
4847 return NULL_RTX;
4849 t_tramp = CALL_EXPR_ARG (exp, 0);
4850 t_func = CALL_EXPR_ARG (exp, 1);
4851 t_chain = CALL_EXPR_ARG (exp, 2);
4853 r_tramp = expand_normal (t_tramp);
4854 m_tramp = gen_rtx_MEM (BLKmode, r_tramp);
4855 MEM_NOTRAP_P (m_tramp) = 1;
4857 /* If ONSTACK, the TRAMP argument should be the address of a field
4858 within the local function's FRAME decl. Either way, let's see if
4859 we can fill in the MEM_ATTRs for this memory. */
4860 if (TREE_CODE (t_tramp) == ADDR_EXPR)
4861 set_mem_attributes (m_tramp, TREE_OPERAND (t_tramp, 0), true);
4863 /* Creator of a heap trampoline is responsible for making sure the
4864 address is aligned to at least STACK_BOUNDARY. Normally malloc
4865 will ensure this anyhow. */
4866 tmp = round_trampoline_addr (r_tramp);
4867 if (tmp != r_tramp)
4869 m_tramp = change_address (m_tramp, BLKmode, tmp);
4870 set_mem_align (m_tramp, TRAMPOLINE_ALIGNMENT);
4871 set_mem_size (m_tramp, TRAMPOLINE_SIZE);
4874 /* The FUNC argument should be the address of the nested function.
4875 Extract the actual function decl to pass to the hook. */
4876 gcc_assert (TREE_CODE (t_func) == ADDR_EXPR);
4877 t_func = TREE_OPERAND (t_func, 0);
4878 gcc_assert (TREE_CODE (t_func) == FUNCTION_DECL);
4880 r_chain = expand_normal (t_chain);
4882 /* Generate insns to initialize the trampoline. */
4883 targetm.calls.trampoline_init (m_tramp, t_func, r_chain);
4885 if (onstack)
4887 trampolines_created = 1;
4889 warning_at (DECL_SOURCE_LOCATION (t_func), OPT_Wtrampolines,
4890 "trampoline generated for nested function %qD", t_func);
4893 return const0_rtx;
4896 static rtx
4897 expand_builtin_adjust_trampoline (tree exp)
4899 rtx tramp;
4901 if (!validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
4902 return NULL_RTX;
4904 tramp = expand_normal (CALL_EXPR_ARG (exp, 0));
4905 tramp = round_trampoline_addr (tramp);
4906 if (targetm.calls.trampoline_adjust_address)
4907 tramp = targetm.calls.trampoline_adjust_address (tramp);
4909 return tramp;
4912 /* Expand the call EXP to the built-in signbit, signbitf or signbitl
4913 function. The function first checks whether the back end provides
4914 an insn to implement signbit for the respective mode. If not, it
4915 checks whether the floating point format of the value is such that
4916 the sign bit can be extracted. If that is not the case, the
4917 function returns NULL_RTX to indicate that a normal call should be
4918 emitted rather than expanding the function in-line. EXP is the
4919 expression that is a call to the builtin function; if convenient,
4920 the result should be placed in TARGET. */
4921 static rtx
4922 expand_builtin_signbit (tree exp, rtx target)
4924 const struct real_format *fmt;
4925 enum machine_mode fmode, imode, rmode;
4926 tree arg;
4927 int word, bitpos;
4928 enum insn_code icode;
4929 rtx temp;
4930 location_t loc = EXPR_LOCATION (exp);
4932 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
4933 return NULL_RTX;
4935 arg = CALL_EXPR_ARG (exp, 0);
4936 fmode = TYPE_MODE (TREE_TYPE (arg));
4937 rmode = TYPE_MODE (TREE_TYPE (exp));
4938 fmt = REAL_MODE_FORMAT (fmode);
4940 arg = builtin_save_expr (arg);
4942 /* Expand the argument yielding a RTX expression. */
4943 temp = expand_normal (arg);
4945 /* Check if the back end provides an insn that handles signbit for the
4946 argument's mode. */
4947 icode = optab_handler (signbit_optab, fmode);
4948 if (icode != CODE_FOR_nothing)
4950 rtx last = get_last_insn ();
4951 target = gen_reg_rtx (TYPE_MODE (TREE_TYPE (exp)));
4952 if (maybe_emit_unop_insn (icode, target, temp, UNKNOWN))
4953 return target;
4954 delete_insns_since (last);
4957 /* For floating point formats without a sign bit, implement signbit
4958 as "ARG < 0.0". */
4959 bitpos = fmt->signbit_ro;
4960 if (bitpos < 0)
4962 /* But we can't do this if the format supports signed zero. */
4963 if (fmt->has_signed_zero && HONOR_SIGNED_ZEROS (fmode))
4964 return NULL_RTX;
4966 arg = fold_build2_loc (loc, LT_EXPR, TREE_TYPE (exp), arg,
4967 build_real (TREE_TYPE (arg), dconst0));
4968 return expand_expr (arg, target, VOIDmode, EXPAND_NORMAL);
4971 if (GET_MODE_SIZE (fmode) <= UNITS_PER_WORD)
4973 imode = int_mode_for_mode (fmode);
4974 if (imode == BLKmode)
4975 return NULL_RTX;
4976 temp = gen_lowpart (imode, temp);
4978 else
4980 imode = word_mode;
4981 /* Handle targets with different FP word orders. */
4982 if (FLOAT_WORDS_BIG_ENDIAN)
4983 word = (GET_MODE_BITSIZE (fmode) - bitpos) / BITS_PER_WORD;
4984 else
4985 word = bitpos / BITS_PER_WORD;
4986 temp = operand_subword_force (temp, word, fmode);
4987 bitpos = bitpos % BITS_PER_WORD;
4990 /* Force the intermediate word_mode (or narrower) result into a
4991 register. This avoids attempting to create paradoxical SUBREGs
4992 of floating point modes below. */
4993 temp = force_reg (imode, temp);
4995 /* If the bitpos is within the "result mode" lowpart, the operation
4996 can be implement with a single bitwise AND. Otherwise, we need
4997 a right shift and an AND. */
4999 if (bitpos < GET_MODE_BITSIZE (rmode))
5001 double_int mask = double_int_zero.set_bit (bitpos);
5003 if (GET_MODE_SIZE (imode) > GET_MODE_SIZE (rmode))
5004 temp = gen_lowpart (rmode, temp);
5005 temp = expand_binop (rmode, and_optab, temp,
5006 immed_double_int_const (mask, rmode),
5007 NULL_RTX, 1, OPTAB_LIB_WIDEN);
5009 else
5011 /* Perform a logical right shift to place the signbit in the least
5012 significant bit, then truncate the result to the desired mode
5013 and mask just this bit. */
5014 temp = expand_shift (RSHIFT_EXPR, imode, temp, bitpos, NULL_RTX, 1);
5015 temp = gen_lowpart (rmode, temp);
5016 temp = expand_binop (rmode, and_optab, temp, const1_rtx,
5017 NULL_RTX, 1, OPTAB_LIB_WIDEN);
5020 return temp;
5023 /* Expand fork or exec calls. TARGET is the desired target of the
5024 call. EXP is the call. FN is the
5025 identificator of the actual function. IGNORE is nonzero if the
5026 value is to be ignored. */
5028 static rtx
5029 expand_builtin_fork_or_exec (tree fn, tree exp, rtx target, int ignore)
5031 tree id, decl;
5032 tree call;
5034 /* If we are not profiling, just call the function. */
5035 if (!profile_arc_flag)
5036 return NULL_RTX;
5038 /* Otherwise call the wrapper. This should be equivalent for the rest of
5039 compiler, so the code does not diverge, and the wrapper may run the
5040 code necessary for keeping the profiling sane. */
5042 switch (DECL_FUNCTION_CODE (fn))
5044 case BUILT_IN_FORK:
5045 id = get_identifier ("__gcov_fork");
5046 break;
5048 case BUILT_IN_EXECL:
5049 id = get_identifier ("__gcov_execl");
5050 break;
5052 case BUILT_IN_EXECV:
5053 id = get_identifier ("__gcov_execv");
5054 break;
5056 case BUILT_IN_EXECLP:
5057 id = get_identifier ("__gcov_execlp");
5058 break;
5060 case BUILT_IN_EXECLE:
5061 id = get_identifier ("__gcov_execle");
5062 break;
5064 case BUILT_IN_EXECVP:
5065 id = get_identifier ("__gcov_execvp");
5066 break;
5068 case BUILT_IN_EXECVE:
5069 id = get_identifier ("__gcov_execve");
5070 break;
5072 default:
5073 gcc_unreachable ();
5076 decl = build_decl (DECL_SOURCE_LOCATION (fn),
5077 FUNCTION_DECL, id, TREE_TYPE (fn));
5078 DECL_EXTERNAL (decl) = 1;
5079 TREE_PUBLIC (decl) = 1;
5080 DECL_ARTIFICIAL (decl) = 1;
5081 TREE_NOTHROW (decl) = 1;
5082 DECL_VISIBILITY (decl) = VISIBILITY_DEFAULT;
5083 DECL_VISIBILITY_SPECIFIED (decl) = 1;
5084 call = rewrite_call_expr (EXPR_LOCATION (exp), exp, 0, decl, 0);
5085 return expand_call (call, target, ignore);
5090 /* Reconstitute a mode for a __sync intrinsic operation. Since the type of
5091 the pointer in these functions is void*, the tree optimizers may remove
5092 casts. The mode computed in expand_builtin isn't reliable either, due
5093 to __sync_bool_compare_and_swap.
5095 FCODE_DIFF should be fcode - base, where base is the FOO_1 code for the
5096 group of builtins. This gives us log2 of the mode size. */
5098 static inline enum machine_mode
5099 get_builtin_sync_mode (int fcode_diff)
5101 /* The size is not negotiable, so ask not to get BLKmode in return
5102 if the target indicates that a smaller size would be better. */
5103 return mode_for_size (BITS_PER_UNIT << fcode_diff, MODE_INT, 0);
5106 /* Expand the memory expression LOC and return the appropriate memory operand
5107 for the builtin_sync operations. */
5109 static rtx
5110 get_builtin_sync_mem (tree loc, enum machine_mode mode)
5112 rtx addr, mem;
5114 addr = expand_expr (loc, NULL_RTX, ptr_mode, EXPAND_SUM);
5115 addr = convert_memory_address (Pmode, addr);
5117 /* Note that we explicitly do not want any alias information for this
5118 memory, so that we kill all other live memories. Otherwise we don't
5119 satisfy the full barrier semantics of the intrinsic. */
5120 mem = validize_mem (gen_rtx_MEM (mode, addr));
5122 /* The alignment needs to be at least according to that of the mode. */
5123 set_mem_align (mem, MAX (GET_MODE_ALIGNMENT (mode),
5124 get_pointer_alignment (loc)));
5125 set_mem_alias_set (mem, ALIAS_SET_MEMORY_BARRIER);
5126 MEM_VOLATILE_P (mem) = 1;
5128 return mem;
5131 /* Make sure an argument is in the right mode.
5132 EXP is the tree argument.
5133 MODE is the mode it should be in. */
5135 static rtx
5136 expand_expr_force_mode (tree exp, enum machine_mode mode)
5138 rtx val;
5139 enum machine_mode old_mode;
5141 val = expand_expr (exp, NULL_RTX, mode, EXPAND_NORMAL);
5142 /* If VAL is promoted to a wider mode, convert it back to MODE. Take care
5143 of CONST_INTs, where we know the old_mode only from the call argument. */
5145 old_mode = GET_MODE (val);
5146 if (old_mode == VOIDmode)
5147 old_mode = TYPE_MODE (TREE_TYPE (exp));
5148 val = convert_modes (mode, old_mode, val, 1);
5149 return val;
5153 /* Expand the __sync_xxx_and_fetch and __sync_fetch_and_xxx intrinsics.
5154 EXP is the CALL_EXPR. CODE is the rtx code
5155 that corresponds to the arithmetic or logical operation from the name;
5156 an exception here is that NOT actually means NAND. TARGET is an optional
5157 place for us to store the results; AFTER is true if this is the
5158 fetch_and_xxx form. */
5160 static rtx
5161 expand_builtin_sync_operation (enum machine_mode mode, tree exp,
5162 enum rtx_code code, bool after,
5163 rtx target)
5165 rtx val, mem;
5166 location_t loc = EXPR_LOCATION (exp);
5168 if (code == NOT && warn_sync_nand)
5170 tree fndecl = get_callee_fndecl (exp);
5171 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
5173 static bool warned_f_a_n, warned_n_a_f;
5175 switch (fcode)
5177 case BUILT_IN_SYNC_FETCH_AND_NAND_1:
5178 case BUILT_IN_SYNC_FETCH_AND_NAND_2:
5179 case BUILT_IN_SYNC_FETCH_AND_NAND_4:
5180 case BUILT_IN_SYNC_FETCH_AND_NAND_8:
5181 case BUILT_IN_SYNC_FETCH_AND_NAND_16:
5182 if (warned_f_a_n)
5183 break;
5185 fndecl = builtin_decl_implicit (BUILT_IN_SYNC_FETCH_AND_NAND_N);
5186 inform (loc, "%qD changed semantics in GCC 4.4", fndecl);
5187 warned_f_a_n = true;
5188 break;
5190 case BUILT_IN_SYNC_NAND_AND_FETCH_1:
5191 case BUILT_IN_SYNC_NAND_AND_FETCH_2:
5192 case BUILT_IN_SYNC_NAND_AND_FETCH_4:
5193 case BUILT_IN_SYNC_NAND_AND_FETCH_8:
5194 case BUILT_IN_SYNC_NAND_AND_FETCH_16:
5195 if (warned_n_a_f)
5196 break;
5198 fndecl = builtin_decl_implicit (BUILT_IN_SYNC_NAND_AND_FETCH_N);
5199 inform (loc, "%qD changed semantics in GCC 4.4", fndecl);
5200 warned_n_a_f = true;
5201 break;
5203 default:
5204 gcc_unreachable ();
5208 /* Expand the operands. */
5209 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5210 val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
5212 return expand_atomic_fetch_op (target, mem, val, code, MEMMODEL_SEQ_CST,
5213 after);
5216 /* Expand the __sync_val_compare_and_swap and __sync_bool_compare_and_swap
5217 intrinsics. EXP is the CALL_EXPR. IS_BOOL is
5218 true if this is the boolean form. TARGET is a place for us to store the
5219 results; this is NOT optional if IS_BOOL is true. */
5221 static rtx
5222 expand_builtin_compare_and_swap (enum machine_mode mode, tree exp,
5223 bool is_bool, rtx target)
5225 rtx old_val, new_val, mem;
5226 rtx *pbool, *poval;
5228 /* Expand the operands. */
5229 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5230 old_val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
5231 new_val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 2), mode);
5233 pbool = poval = NULL;
5234 if (target != const0_rtx)
5236 if (is_bool)
5237 pbool = &target;
5238 else
5239 poval = &target;
5241 if (!expand_atomic_compare_and_swap (pbool, poval, mem, old_val, new_val,
5242 false, MEMMODEL_SEQ_CST,
5243 MEMMODEL_SEQ_CST))
5244 return NULL_RTX;
5246 return target;
5249 /* Expand the __sync_lock_test_and_set intrinsic. Note that the most
5250 general form is actually an atomic exchange, and some targets only
5251 support a reduced form with the second argument being a constant 1.
5252 EXP is the CALL_EXPR; TARGET is an optional place for us to store
5253 the results. */
5255 static rtx
5256 expand_builtin_sync_lock_test_and_set (enum machine_mode mode, tree exp,
5257 rtx target)
5259 rtx val, mem;
5261 /* Expand the operands. */
5262 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5263 val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
5265 return expand_sync_lock_test_and_set (target, mem, val);
5268 /* Expand the __sync_lock_release intrinsic. EXP is the CALL_EXPR. */
5270 static void
5271 expand_builtin_sync_lock_release (enum machine_mode mode, tree exp)
5273 rtx mem;
5275 /* Expand the operands. */
5276 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5278 expand_atomic_store (mem, const0_rtx, MEMMODEL_RELEASE, true);
5281 /* Given an integer representing an ``enum memmodel'', verify its
5282 correctness and return the memory model enum. */
5284 static enum memmodel
5285 get_memmodel (tree exp)
5287 rtx op;
5288 unsigned HOST_WIDE_INT val;
5290 /* If the parameter is not a constant, it's a run time value so we'll just
5291 convert it to MEMMODEL_SEQ_CST to avoid annoying runtime checking. */
5292 if (TREE_CODE (exp) != INTEGER_CST)
5293 return MEMMODEL_SEQ_CST;
5295 op = expand_normal (exp);
5297 val = INTVAL (op);
5298 if (targetm.memmodel_check)
5299 val = targetm.memmodel_check (val);
5300 else if (val & ~MEMMODEL_MASK)
5302 warning (OPT_Winvalid_memory_model,
5303 "Unknown architecture specifier in memory model to builtin.");
5304 return MEMMODEL_SEQ_CST;
5307 if ((INTVAL(op) & MEMMODEL_MASK) >= MEMMODEL_LAST)
5309 warning (OPT_Winvalid_memory_model,
5310 "invalid memory model argument to builtin");
5311 return MEMMODEL_SEQ_CST;
5314 return (enum memmodel) val;
5317 /* Expand the __atomic_exchange intrinsic:
5318 TYPE __atomic_exchange (TYPE *object, TYPE desired, enum memmodel)
5319 EXP is the CALL_EXPR.
5320 TARGET is an optional place for us to store the results. */
5322 static rtx
5323 expand_builtin_atomic_exchange (enum machine_mode mode, tree exp, rtx target)
5325 rtx val, mem;
5326 enum memmodel model;
5328 model = get_memmodel (CALL_EXPR_ARG (exp, 2));
5329 if ((model & MEMMODEL_MASK) == MEMMODEL_CONSUME)
5331 error ("invalid memory model for %<__atomic_exchange%>");
5332 return NULL_RTX;
5335 if (!flag_inline_atomics)
5336 return NULL_RTX;
5338 /* Expand the operands. */
5339 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5340 val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
5342 return expand_atomic_exchange (target, mem, val, model);
5345 /* Expand the __atomic_compare_exchange intrinsic:
5346 bool __atomic_compare_exchange (TYPE *object, TYPE *expect,
5347 TYPE desired, BOOL weak,
5348 enum memmodel success,
5349 enum memmodel failure)
5350 EXP is the CALL_EXPR.
5351 TARGET is an optional place for us to store the results. */
5353 static rtx
5354 expand_builtin_atomic_compare_exchange (enum machine_mode mode, tree exp,
5355 rtx target)
5357 rtx expect, desired, mem, oldval;
5358 enum memmodel success, failure;
5359 tree weak;
5360 bool is_weak;
5362 success = get_memmodel (CALL_EXPR_ARG (exp, 4));
5363 failure = get_memmodel (CALL_EXPR_ARG (exp, 5));
5365 if ((failure & MEMMODEL_MASK) == MEMMODEL_RELEASE
5366 || (failure & MEMMODEL_MASK) == MEMMODEL_ACQ_REL)
5368 error ("invalid failure memory model for %<__atomic_compare_exchange%>");
5369 return NULL_RTX;
5372 if (failure > success)
5374 error ("failure memory model cannot be stronger than success "
5375 "memory model for %<__atomic_compare_exchange%>");
5376 return NULL_RTX;
5379 if (!flag_inline_atomics)
5380 return NULL_RTX;
5382 /* Expand the operands. */
5383 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5385 expect = expand_normal (CALL_EXPR_ARG (exp, 1));
5386 expect = convert_memory_address (Pmode, expect);
5387 expect = gen_rtx_MEM (mode, expect);
5388 desired = expand_expr_force_mode (CALL_EXPR_ARG (exp, 2), mode);
5390 weak = CALL_EXPR_ARG (exp, 3);
5391 is_weak = false;
5392 if (host_integerp (weak, 0) && tree_low_cst (weak, 0) != 0)
5393 is_weak = true;
5395 oldval = expect;
5396 if (!expand_atomic_compare_and_swap ((target == const0_rtx ? NULL : &target),
5397 &oldval, mem, oldval, desired,
5398 is_weak, success, failure))
5399 return NULL_RTX;
5401 if (oldval != expect)
5402 emit_move_insn (expect, oldval);
5404 return target;
5407 /* Expand the __atomic_load intrinsic:
5408 TYPE __atomic_load (TYPE *object, enum memmodel)
5409 EXP is the CALL_EXPR.
5410 TARGET is an optional place for us to store the results. */
5412 static rtx
5413 expand_builtin_atomic_load (enum machine_mode mode, tree exp, rtx target)
5415 rtx mem;
5416 enum memmodel model;
5418 model = get_memmodel (CALL_EXPR_ARG (exp, 1));
5419 if ((model & MEMMODEL_MASK) == MEMMODEL_RELEASE
5420 || (model & MEMMODEL_MASK) == MEMMODEL_ACQ_REL)
5422 error ("invalid memory model for %<__atomic_load%>");
5423 return NULL_RTX;
5426 if (!flag_inline_atomics)
5427 return NULL_RTX;
5429 /* Expand the operand. */
5430 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5432 return expand_atomic_load (target, mem, model);
5436 /* Expand the __atomic_store intrinsic:
5437 void __atomic_store (TYPE *object, TYPE desired, enum memmodel)
5438 EXP is the CALL_EXPR.
5439 TARGET is an optional place for us to store the results. */
5441 static rtx
5442 expand_builtin_atomic_store (enum machine_mode mode, tree exp)
5444 rtx mem, val;
5445 enum memmodel model;
5447 model = get_memmodel (CALL_EXPR_ARG (exp, 2));
5448 if ((model & MEMMODEL_MASK) != MEMMODEL_RELAXED
5449 && (model & MEMMODEL_MASK) != MEMMODEL_SEQ_CST
5450 && (model & MEMMODEL_MASK) != MEMMODEL_RELEASE)
5452 error ("invalid memory model for %<__atomic_store%>");
5453 return NULL_RTX;
5456 if (!flag_inline_atomics)
5457 return NULL_RTX;
5459 /* Expand the operands. */
5460 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5461 val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
5463 return expand_atomic_store (mem, val, model, false);
5466 /* Expand the __atomic_fetch_XXX intrinsic:
5467 TYPE __atomic_fetch_XXX (TYPE *object, TYPE val, enum memmodel)
5468 EXP is the CALL_EXPR.
5469 TARGET is an optional place for us to store the results.
5470 CODE is the operation, PLUS, MINUS, ADD, XOR, or IOR.
5471 FETCH_AFTER is true if returning the result of the operation.
5472 FETCH_AFTER is false if returning the value before the operation.
5473 IGNORE is true if the result is not used.
5474 EXT_CALL is the correct builtin for an external call if this cannot be
5475 resolved to an instruction sequence. */
5477 static rtx
5478 expand_builtin_atomic_fetch_op (enum machine_mode mode, tree exp, rtx target,
5479 enum rtx_code code, bool fetch_after,
5480 bool ignore, enum built_in_function ext_call)
5482 rtx val, mem, ret;
5483 enum memmodel model;
5484 tree fndecl;
5485 tree addr;
5487 model = get_memmodel (CALL_EXPR_ARG (exp, 2));
5489 /* Expand the operands. */
5490 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5491 val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
5493 /* Only try generating instructions if inlining is turned on. */
5494 if (flag_inline_atomics)
5496 ret = expand_atomic_fetch_op (target, mem, val, code, model, fetch_after);
5497 if (ret)
5498 return ret;
5501 /* Return if a different routine isn't needed for the library call. */
5502 if (ext_call == BUILT_IN_NONE)
5503 return NULL_RTX;
5505 /* Change the call to the specified function. */
5506 fndecl = get_callee_fndecl (exp);
5507 addr = CALL_EXPR_FN (exp);
5508 STRIP_NOPS (addr);
5510 gcc_assert (TREE_OPERAND (addr, 0) == fndecl);
5511 TREE_OPERAND (addr, 0) = builtin_decl_explicit(ext_call);
5513 /* Expand the call here so we can emit trailing code. */
5514 ret = expand_call (exp, target, ignore);
5516 /* Replace the original function just in case it matters. */
5517 TREE_OPERAND (addr, 0) = fndecl;
5519 /* Then issue the arithmetic correction to return the right result. */
5520 if (!ignore)
5522 if (code == NOT)
5524 ret = expand_simple_binop (mode, AND, ret, val, NULL_RTX, true,
5525 OPTAB_LIB_WIDEN);
5526 ret = expand_simple_unop (mode, NOT, ret, target, true);
5528 else
5529 ret = expand_simple_binop (mode, code, ret, val, target, true,
5530 OPTAB_LIB_WIDEN);
5532 return ret;
5536 #ifndef HAVE_atomic_clear
5537 # define HAVE_atomic_clear 0
5538 # define gen_atomic_clear(x,y) (gcc_unreachable (), NULL_RTX)
5539 #endif
5541 /* Expand an atomic clear operation.
5542 void _atomic_clear (BOOL *obj, enum memmodel)
5543 EXP is the call expression. */
5545 static rtx
5546 expand_builtin_atomic_clear (tree exp)
5548 enum machine_mode mode;
5549 rtx mem, ret;
5550 enum memmodel model;
5552 mode = mode_for_size (BOOL_TYPE_SIZE, MODE_INT, 0);
5553 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5554 model = get_memmodel (CALL_EXPR_ARG (exp, 1));
5556 if ((model & MEMMODEL_MASK) == MEMMODEL_ACQUIRE
5557 || (model & MEMMODEL_MASK) == MEMMODEL_ACQ_REL)
5559 error ("invalid memory model for %<__atomic_store%>");
5560 return const0_rtx;
5563 if (HAVE_atomic_clear)
5565 emit_insn (gen_atomic_clear (mem, model));
5566 return const0_rtx;
5569 /* Try issuing an __atomic_store, and allow fallback to __sync_lock_release.
5570 Failing that, a store is issued by __atomic_store. The only way this can
5571 fail is if the bool type is larger than a word size. Unlikely, but
5572 handle it anyway for completeness. Assume a single threaded model since
5573 there is no atomic support in this case, and no barriers are required. */
5574 ret = expand_atomic_store (mem, const0_rtx, model, true);
5575 if (!ret)
5576 emit_move_insn (mem, const0_rtx);
5577 return const0_rtx;
5580 /* Expand an atomic test_and_set operation.
5581 bool _atomic_test_and_set (BOOL *obj, enum memmodel)
5582 EXP is the call expression. */
5584 static rtx
5585 expand_builtin_atomic_test_and_set (tree exp, rtx target)
5587 rtx mem;
5588 enum memmodel model;
5589 enum machine_mode mode;
5591 mode = mode_for_size (BOOL_TYPE_SIZE, MODE_INT, 0);
5592 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5593 model = get_memmodel (CALL_EXPR_ARG (exp, 1));
5595 return expand_atomic_test_and_set (target, mem, model);
5599 /* Return true if (optional) argument ARG1 of size ARG0 is always lock free on
5600 this architecture. If ARG1 is NULL, use typical alignment for size ARG0. */
5602 static tree
5603 fold_builtin_atomic_always_lock_free (tree arg0, tree arg1)
5605 int size;
5606 enum machine_mode mode;
5607 unsigned int mode_align, type_align;
5609 if (TREE_CODE (arg0) != INTEGER_CST)
5610 return NULL_TREE;
5612 size = INTVAL (expand_normal (arg0)) * BITS_PER_UNIT;
5613 mode = mode_for_size (size, MODE_INT, 0);
5614 mode_align = GET_MODE_ALIGNMENT (mode);
5616 if (TREE_CODE (arg1) == INTEGER_CST && INTVAL (expand_normal (arg1)) == 0)
5617 type_align = mode_align;
5618 else
5620 tree ttype = TREE_TYPE (arg1);
5622 /* This function is usually invoked and folded immediately by the front
5623 end before anything else has a chance to look at it. The pointer
5624 parameter at this point is usually cast to a void *, so check for that
5625 and look past the cast. */
5626 if (TREE_CODE (arg1) == NOP_EXPR && POINTER_TYPE_P (ttype)
5627 && VOID_TYPE_P (TREE_TYPE (ttype)))
5628 arg1 = TREE_OPERAND (arg1, 0);
5630 ttype = TREE_TYPE (arg1);
5631 gcc_assert (POINTER_TYPE_P (ttype));
5633 /* Get the underlying type of the object. */
5634 ttype = TREE_TYPE (ttype);
5635 type_align = TYPE_ALIGN (ttype);
5638 /* If the object has smaller alignment, the the lock free routines cannot
5639 be used. */
5640 if (type_align < mode_align)
5641 return boolean_false_node;
5643 /* Check if a compare_and_swap pattern exists for the mode which represents
5644 the required size. The pattern is not allowed to fail, so the existence
5645 of the pattern indicates support is present. */
5646 if (can_compare_and_swap_p (mode, true))
5647 return boolean_true_node;
5648 else
5649 return boolean_false_node;
5652 /* Return true if the parameters to call EXP represent an object which will
5653 always generate lock free instructions. The first argument represents the
5654 size of the object, and the second parameter is a pointer to the object
5655 itself. If NULL is passed for the object, then the result is based on
5656 typical alignment for an object of the specified size. Otherwise return
5657 false. */
5659 static rtx
5660 expand_builtin_atomic_always_lock_free (tree exp)
5662 tree size;
5663 tree arg0 = CALL_EXPR_ARG (exp, 0);
5664 tree arg1 = CALL_EXPR_ARG (exp, 1);
5666 if (TREE_CODE (arg0) != INTEGER_CST)
5668 error ("non-constant argument 1 to __atomic_always_lock_free");
5669 return const0_rtx;
5672 size = fold_builtin_atomic_always_lock_free (arg0, arg1);
5673 if (size == boolean_true_node)
5674 return const1_rtx;
5675 return const0_rtx;
5678 /* Return a one or zero if it can be determined that object ARG1 of size ARG
5679 is lock free on this architecture. */
5681 static tree
5682 fold_builtin_atomic_is_lock_free (tree arg0, tree arg1)
5684 if (!flag_inline_atomics)
5685 return NULL_TREE;
5687 /* If it isn't always lock free, don't generate a result. */
5688 if (fold_builtin_atomic_always_lock_free (arg0, arg1) == boolean_true_node)
5689 return boolean_true_node;
5691 return NULL_TREE;
5694 /* Return true if the parameters to call EXP represent an object which will
5695 always generate lock free instructions. The first argument represents the
5696 size of the object, and the second parameter is a pointer to the object
5697 itself. If NULL is passed for the object, then the result is based on
5698 typical alignment for an object of the specified size. Otherwise return
5699 NULL*/
5701 static rtx
5702 expand_builtin_atomic_is_lock_free (tree exp)
5704 tree size;
5705 tree arg0 = CALL_EXPR_ARG (exp, 0);
5706 tree arg1 = CALL_EXPR_ARG (exp, 1);
5708 if (!INTEGRAL_TYPE_P (TREE_TYPE (arg0)))
5710 error ("non-integer argument 1 to __atomic_is_lock_free");
5711 return NULL_RTX;
5714 if (!flag_inline_atomics)
5715 return NULL_RTX;
5717 /* If the value is known at compile time, return the RTX for it. */
5718 size = fold_builtin_atomic_is_lock_free (arg0, arg1);
5719 if (size == boolean_true_node)
5720 return const1_rtx;
5722 return NULL_RTX;
5725 /* Expand the __atomic_thread_fence intrinsic:
5726 void __atomic_thread_fence (enum memmodel)
5727 EXP is the CALL_EXPR. */
5729 static void
5730 expand_builtin_atomic_thread_fence (tree exp)
5732 enum memmodel model = get_memmodel (CALL_EXPR_ARG (exp, 0));
5733 expand_mem_thread_fence (model);
5736 /* Expand the __atomic_signal_fence intrinsic:
5737 void __atomic_signal_fence (enum memmodel)
5738 EXP is the CALL_EXPR. */
5740 static void
5741 expand_builtin_atomic_signal_fence (tree exp)
5743 enum memmodel model = get_memmodel (CALL_EXPR_ARG (exp, 0));
5744 expand_mem_signal_fence (model);
5747 /* Expand the __sync_synchronize intrinsic. */
5749 static void
5750 expand_builtin_sync_synchronize (void)
5752 expand_mem_thread_fence (MEMMODEL_SEQ_CST);
5755 static rtx
5756 expand_builtin_thread_pointer (tree exp, rtx target)
5758 enum insn_code icode;
5759 if (!validate_arglist (exp, VOID_TYPE))
5760 return const0_rtx;
5761 icode = direct_optab_handler (get_thread_pointer_optab, Pmode);
5762 if (icode != CODE_FOR_nothing)
5764 struct expand_operand op;
5765 if (!REG_P (target) || GET_MODE (target) != Pmode)
5766 target = gen_reg_rtx (Pmode);
5767 create_output_operand (&op, target, Pmode);
5768 expand_insn (icode, 1, &op);
5769 return target;
5771 error ("__builtin_thread_pointer is not supported on this target");
5772 return const0_rtx;
5775 static void
5776 expand_builtin_set_thread_pointer (tree exp)
5778 enum insn_code icode;
5779 if (!validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
5780 return;
5781 icode = direct_optab_handler (set_thread_pointer_optab, Pmode);
5782 if (icode != CODE_FOR_nothing)
5784 struct expand_operand op;
5785 rtx val = expand_expr (CALL_EXPR_ARG (exp, 0), NULL_RTX,
5786 Pmode, EXPAND_NORMAL);
5787 create_input_operand (&op, val, Pmode);
5788 expand_insn (icode, 1, &op);
5789 return;
5791 error ("__builtin_set_thread_pointer is not supported on this target");
5795 /* Expand an expression EXP that calls a built-in function,
5796 with result going to TARGET if that's convenient
5797 (and in mode MODE if that's convenient).
5798 SUBTARGET may be used as the target for computing one of EXP's operands.
5799 IGNORE is nonzero if the value is to be ignored. */
5802 expand_builtin (tree exp, rtx target, rtx subtarget, enum machine_mode mode,
5803 int ignore)
5805 tree fndecl = get_callee_fndecl (exp);
5806 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
5807 enum machine_mode target_mode = TYPE_MODE (TREE_TYPE (exp));
5808 int flags;
5810 if (DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
5811 return targetm.expand_builtin (exp, target, subtarget, mode, ignore);
5813 /* When not optimizing, generate calls to library functions for a certain
5814 set of builtins. */
5815 if (!optimize
5816 && !called_as_built_in (fndecl)
5817 && fcode != BUILT_IN_ALLOCA
5818 && fcode != BUILT_IN_ALLOCA_WITH_ALIGN
5819 && fcode != BUILT_IN_FREE)
5820 return expand_call (exp, target, ignore);
5822 /* The built-in function expanders test for target == const0_rtx
5823 to determine whether the function's result will be ignored. */
5824 if (ignore)
5825 target = const0_rtx;
5827 /* If the result of a pure or const built-in function is ignored, and
5828 none of its arguments are volatile, we can avoid expanding the
5829 built-in call and just evaluate the arguments for side-effects. */
5830 if (target == const0_rtx
5831 && ((flags = flags_from_decl_or_type (fndecl)) & (ECF_CONST | ECF_PURE))
5832 && !(flags & ECF_LOOPING_CONST_OR_PURE))
5834 bool volatilep = false;
5835 tree arg;
5836 call_expr_arg_iterator iter;
5838 FOR_EACH_CALL_EXPR_ARG (arg, iter, exp)
5839 if (TREE_THIS_VOLATILE (arg))
5841 volatilep = true;
5842 break;
5845 if (! volatilep)
5847 FOR_EACH_CALL_EXPR_ARG (arg, iter, exp)
5848 expand_expr (arg, const0_rtx, VOIDmode, EXPAND_NORMAL);
5849 return const0_rtx;
5853 switch (fcode)
5855 CASE_FLT_FN (BUILT_IN_FABS):
5856 target = expand_builtin_fabs (exp, target, subtarget);
5857 if (target)
5858 return target;
5859 break;
5861 CASE_FLT_FN (BUILT_IN_COPYSIGN):
5862 target = expand_builtin_copysign (exp, target, subtarget);
5863 if (target)
5864 return target;
5865 break;
5867 /* Just do a normal library call if we were unable to fold
5868 the values. */
5869 CASE_FLT_FN (BUILT_IN_CABS):
5870 break;
5872 CASE_FLT_FN (BUILT_IN_EXP):
5873 CASE_FLT_FN (BUILT_IN_EXP10):
5874 CASE_FLT_FN (BUILT_IN_POW10):
5875 CASE_FLT_FN (BUILT_IN_EXP2):
5876 CASE_FLT_FN (BUILT_IN_EXPM1):
5877 CASE_FLT_FN (BUILT_IN_LOGB):
5878 CASE_FLT_FN (BUILT_IN_LOG):
5879 CASE_FLT_FN (BUILT_IN_LOG10):
5880 CASE_FLT_FN (BUILT_IN_LOG2):
5881 CASE_FLT_FN (BUILT_IN_LOG1P):
5882 CASE_FLT_FN (BUILT_IN_TAN):
5883 CASE_FLT_FN (BUILT_IN_ASIN):
5884 CASE_FLT_FN (BUILT_IN_ACOS):
5885 CASE_FLT_FN (BUILT_IN_ATAN):
5886 CASE_FLT_FN (BUILT_IN_SIGNIFICAND):
5887 /* Treat these like sqrt only if unsafe math optimizations are allowed,
5888 because of possible accuracy problems. */
5889 if (! flag_unsafe_math_optimizations)
5890 break;
5891 CASE_FLT_FN (BUILT_IN_SQRT):
5892 CASE_FLT_FN (BUILT_IN_FLOOR):
5893 CASE_FLT_FN (BUILT_IN_CEIL):
5894 CASE_FLT_FN (BUILT_IN_TRUNC):
5895 CASE_FLT_FN (BUILT_IN_ROUND):
5896 CASE_FLT_FN (BUILT_IN_NEARBYINT):
5897 CASE_FLT_FN (BUILT_IN_RINT):
5898 target = expand_builtin_mathfn (exp, target, subtarget);
5899 if (target)
5900 return target;
5901 break;
5903 CASE_FLT_FN (BUILT_IN_FMA):
5904 target = expand_builtin_mathfn_ternary (exp, target, subtarget);
5905 if (target)
5906 return target;
5907 break;
5909 CASE_FLT_FN (BUILT_IN_ILOGB):
5910 if (! flag_unsafe_math_optimizations)
5911 break;
5912 CASE_FLT_FN (BUILT_IN_ISINF):
5913 CASE_FLT_FN (BUILT_IN_FINITE):
5914 case BUILT_IN_ISFINITE:
5915 case BUILT_IN_ISNORMAL:
5916 target = expand_builtin_interclass_mathfn (exp, target);
5917 if (target)
5918 return target;
5919 break;
5921 CASE_FLT_FN (BUILT_IN_ICEIL):
5922 CASE_FLT_FN (BUILT_IN_LCEIL):
5923 CASE_FLT_FN (BUILT_IN_LLCEIL):
5924 CASE_FLT_FN (BUILT_IN_LFLOOR):
5925 CASE_FLT_FN (BUILT_IN_IFLOOR):
5926 CASE_FLT_FN (BUILT_IN_LLFLOOR):
5927 target = expand_builtin_int_roundingfn (exp, target);
5928 if (target)
5929 return target;
5930 break;
5932 CASE_FLT_FN (BUILT_IN_IRINT):
5933 CASE_FLT_FN (BUILT_IN_LRINT):
5934 CASE_FLT_FN (BUILT_IN_LLRINT):
5935 CASE_FLT_FN (BUILT_IN_IROUND):
5936 CASE_FLT_FN (BUILT_IN_LROUND):
5937 CASE_FLT_FN (BUILT_IN_LLROUND):
5938 target = expand_builtin_int_roundingfn_2 (exp, target);
5939 if (target)
5940 return target;
5941 break;
5943 CASE_FLT_FN (BUILT_IN_POWI):
5944 target = expand_builtin_powi (exp, target);
5945 if (target)
5946 return target;
5947 break;
5949 CASE_FLT_FN (BUILT_IN_ATAN2):
5950 CASE_FLT_FN (BUILT_IN_LDEXP):
5951 CASE_FLT_FN (BUILT_IN_SCALB):
5952 CASE_FLT_FN (BUILT_IN_SCALBN):
5953 CASE_FLT_FN (BUILT_IN_SCALBLN):
5954 if (! flag_unsafe_math_optimizations)
5955 break;
5957 CASE_FLT_FN (BUILT_IN_FMOD):
5958 CASE_FLT_FN (BUILT_IN_REMAINDER):
5959 CASE_FLT_FN (BUILT_IN_DREM):
5960 CASE_FLT_FN (BUILT_IN_POW):
5961 target = expand_builtin_mathfn_2 (exp, target, subtarget);
5962 if (target)
5963 return target;
5964 break;
5966 CASE_FLT_FN (BUILT_IN_CEXPI):
5967 target = expand_builtin_cexpi (exp, target);
5968 gcc_assert (target);
5969 return target;
5971 CASE_FLT_FN (BUILT_IN_SIN):
5972 CASE_FLT_FN (BUILT_IN_COS):
5973 if (! flag_unsafe_math_optimizations)
5974 break;
5975 target = expand_builtin_mathfn_3 (exp, target, subtarget);
5976 if (target)
5977 return target;
5978 break;
5980 CASE_FLT_FN (BUILT_IN_SINCOS):
5981 if (! flag_unsafe_math_optimizations)
5982 break;
5983 target = expand_builtin_sincos (exp);
5984 if (target)
5985 return target;
5986 break;
5988 case BUILT_IN_APPLY_ARGS:
5989 return expand_builtin_apply_args ();
5991 /* __builtin_apply (FUNCTION, ARGUMENTS, ARGSIZE) invokes
5992 FUNCTION with a copy of the parameters described by
5993 ARGUMENTS, and ARGSIZE. It returns a block of memory
5994 allocated on the stack into which is stored all the registers
5995 that might possibly be used for returning the result of a
5996 function. ARGUMENTS is the value returned by
5997 __builtin_apply_args. ARGSIZE is the number of bytes of
5998 arguments that must be copied. ??? How should this value be
5999 computed? We'll also need a safe worst case value for varargs
6000 functions. */
6001 case BUILT_IN_APPLY:
6002 if (!validate_arglist (exp, POINTER_TYPE,
6003 POINTER_TYPE, INTEGER_TYPE, VOID_TYPE)
6004 && !validate_arglist (exp, REFERENCE_TYPE,
6005 POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
6006 return const0_rtx;
6007 else
6009 rtx ops[3];
6011 ops[0] = expand_normal (CALL_EXPR_ARG (exp, 0));
6012 ops[1] = expand_normal (CALL_EXPR_ARG (exp, 1));
6013 ops[2] = expand_normal (CALL_EXPR_ARG (exp, 2));
6015 return expand_builtin_apply (ops[0], ops[1], ops[2]);
6018 /* __builtin_return (RESULT) causes the function to return the
6019 value described by RESULT. RESULT is address of the block of
6020 memory returned by __builtin_apply. */
6021 case BUILT_IN_RETURN:
6022 if (validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
6023 expand_builtin_return (expand_normal (CALL_EXPR_ARG (exp, 0)));
6024 return const0_rtx;
6026 case BUILT_IN_SAVEREGS:
6027 return expand_builtin_saveregs ();
6029 case BUILT_IN_VA_ARG_PACK:
6030 /* All valid uses of __builtin_va_arg_pack () are removed during
6031 inlining. */
6032 error ("%Kinvalid use of %<__builtin_va_arg_pack ()%>", exp);
6033 return const0_rtx;
6035 case BUILT_IN_VA_ARG_PACK_LEN:
6036 /* All valid uses of __builtin_va_arg_pack_len () are removed during
6037 inlining. */
6038 error ("%Kinvalid use of %<__builtin_va_arg_pack_len ()%>", exp);
6039 return const0_rtx;
6041 /* Return the address of the first anonymous stack arg. */
6042 case BUILT_IN_NEXT_ARG:
6043 if (fold_builtin_next_arg (exp, false))
6044 return const0_rtx;
6045 return expand_builtin_next_arg ();
6047 case BUILT_IN_CLEAR_CACHE:
6048 target = expand_builtin___clear_cache (exp);
6049 if (target)
6050 return target;
6051 break;
6053 case BUILT_IN_CLASSIFY_TYPE:
6054 return expand_builtin_classify_type (exp);
6056 case BUILT_IN_CONSTANT_P:
6057 return const0_rtx;
6059 case BUILT_IN_FRAME_ADDRESS:
6060 case BUILT_IN_RETURN_ADDRESS:
6061 return expand_builtin_frame_address (fndecl, exp);
6063 /* Returns the address of the area where the structure is returned.
6064 0 otherwise. */
6065 case BUILT_IN_AGGREGATE_INCOMING_ADDRESS:
6066 if (call_expr_nargs (exp) != 0
6067 || ! AGGREGATE_TYPE_P (TREE_TYPE (TREE_TYPE (current_function_decl)))
6068 || !MEM_P (DECL_RTL (DECL_RESULT (current_function_decl))))
6069 return const0_rtx;
6070 else
6071 return XEXP (DECL_RTL (DECL_RESULT (current_function_decl)), 0);
6073 case BUILT_IN_ALLOCA:
6074 case BUILT_IN_ALLOCA_WITH_ALIGN:
6075 /* If the allocation stems from the declaration of a variable-sized
6076 object, it cannot accumulate. */
6077 target = expand_builtin_alloca (exp, CALL_ALLOCA_FOR_VAR_P (exp));
6078 if (target)
6079 return target;
6080 break;
6082 case BUILT_IN_STACK_SAVE:
6083 return expand_stack_save ();
6085 case BUILT_IN_STACK_RESTORE:
6086 expand_stack_restore (CALL_EXPR_ARG (exp, 0));
6087 return const0_rtx;
6089 case BUILT_IN_BSWAP16:
6090 case BUILT_IN_BSWAP32:
6091 case BUILT_IN_BSWAP64:
6092 target = expand_builtin_bswap (target_mode, exp, target, subtarget);
6093 if (target)
6094 return target;
6095 break;
6097 CASE_INT_FN (BUILT_IN_FFS):
6098 case BUILT_IN_FFSIMAX:
6099 target = expand_builtin_unop (target_mode, exp, target,
6100 subtarget, ffs_optab);
6101 if (target)
6102 return target;
6103 break;
6105 CASE_INT_FN (BUILT_IN_CLZ):
6106 case BUILT_IN_CLZIMAX:
6107 target = expand_builtin_unop (target_mode, exp, target,
6108 subtarget, clz_optab);
6109 if (target)
6110 return target;
6111 break;
6113 CASE_INT_FN (BUILT_IN_CTZ):
6114 case BUILT_IN_CTZIMAX:
6115 target = expand_builtin_unop (target_mode, exp, target,
6116 subtarget, ctz_optab);
6117 if (target)
6118 return target;
6119 break;
6121 CASE_INT_FN (BUILT_IN_CLRSB):
6122 case BUILT_IN_CLRSBIMAX:
6123 target = expand_builtin_unop (target_mode, exp, target,
6124 subtarget, clrsb_optab);
6125 if (target)
6126 return target;
6127 break;
6129 CASE_INT_FN (BUILT_IN_POPCOUNT):
6130 case BUILT_IN_POPCOUNTIMAX:
6131 target = expand_builtin_unop (target_mode, exp, target,
6132 subtarget, popcount_optab);
6133 if (target)
6134 return target;
6135 break;
6137 CASE_INT_FN (BUILT_IN_PARITY):
6138 case BUILT_IN_PARITYIMAX:
6139 target = expand_builtin_unop (target_mode, exp, target,
6140 subtarget, parity_optab);
6141 if (target)
6142 return target;
6143 break;
6145 case BUILT_IN_STRLEN:
6146 target = expand_builtin_strlen (exp, target, target_mode);
6147 if (target)
6148 return target;
6149 break;
6151 case BUILT_IN_STRCPY:
6152 target = expand_builtin_strcpy (exp, target);
6153 if (target)
6154 return target;
6155 break;
6157 case BUILT_IN_STRNCPY:
6158 target = expand_builtin_strncpy (exp, target);
6159 if (target)
6160 return target;
6161 break;
6163 case BUILT_IN_STPCPY:
6164 target = expand_builtin_stpcpy (exp, target, mode);
6165 if (target)
6166 return target;
6167 break;
6169 case BUILT_IN_MEMCPY:
6170 target = expand_builtin_memcpy (exp, target);
6171 if (target)
6172 return target;
6173 break;
6175 case BUILT_IN_MEMPCPY:
6176 target = expand_builtin_mempcpy (exp, target, mode);
6177 if (target)
6178 return target;
6179 break;
6181 case BUILT_IN_MEMSET:
6182 target = expand_builtin_memset (exp, target, mode);
6183 if (target)
6184 return target;
6185 break;
6187 case BUILT_IN_BZERO:
6188 target = expand_builtin_bzero (exp);
6189 if (target)
6190 return target;
6191 break;
6193 case BUILT_IN_STRCMP:
6194 target = expand_builtin_strcmp (exp, target);
6195 if (target)
6196 return target;
6197 break;
6199 case BUILT_IN_STRNCMP:
6200 target = expand_builtin_strncmp (exp, target, mode);
6201 if (target)
6202 return target;
6203 break;
6205 case BUILT_IN_BCMP:
6206 case BUILT_IN_MEMCMP:
6207 target = expand_builtin_memcmp (exp, target, mode);
6208 if (target)
6209 return target;
6210 break;
6212 case BUILT_IN_SETJMP:
6213 /* This should have been lowered to the builtins below. */
6214 gcc_unreachable ();
6216 case BUILT_IN_SETJMP_SETUP:
6217 /* __builtin_setjmp_setup is passed a pointer to an array of five words
6218 and the receiver label. */
6219 if (validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
6221 rtx buf_addr = expand_expr (CALL_EXPR_ARG (exp, 0), subtarget,
6222 VOIDmode, EXPAND_NORMAL);
6223 tree label = TREE_OPERAND (CALL_EXPR_ARG (exp, 1), 0);
6224 rtx label_r = label_rtx (label);
6226 /* This is copied from the handling of non-local gotos. */
6227 expand_builtin_setjmp_setup (buf_addr, label_r);
6228 nonlocal_goto_handler_labels
6229 = gen_rtx_EXPR_LIST (VOIDmode, label_r,
6230 nonlocal_goto_handler_labels);
6231 /* ??? Do not let expand_label treat us as such since we would
6232 not want to be both on the list of non-local labels and on
6233 the list of forced labels. */
6234 FORCED_LABEL (label) = 0;
6235 return const0_rtx;
6237 break;
6239 case BUILT_IN_SETJMP_DISPATCHER:
6240 /* __builtin_setjmp_dispatcher is passed the dispatcher label. */
6241 if (validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
6243 tree label = TREE_OPERAND (CALL_EXPR_ARG (exp, 0), 0);
6244 rtx label_r = label_rtx (label);
6246 /* Remove the dispatcher label from the list of non-local labels
6247 since the receiver labels have been added to it above. */
6248 remove_node_from_expr_list (label_r, &nonlocal_goto_handler_labels);
6249 return const0_rtx;
6251 break;
6253 case BUILT_IN_SETJMP_RECEIVER:
6254 /* __builtin_setjmp_receiver is passed the receiver label. */
6255 if (validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
6257 tree label = TREE_OPERAND (CALL_EXPR_ARG (exp, 0), 0);
6258 rtx label_r = label_rtx (label);
6260 expand_builtin_setjmp_receiver (label_r);
6261 return const0_rtx;
6263 break;
6265 /* __builtin_longjmp is passed a pointer to an array of five words.
6266 It's similar to the C library longjmp function but works with
6267 __builtin_setjmp above. */
6268 case BUILT_IN_LONGJMP:
6269 if (validate_arglist (exp, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
6271 rtx buf_addr = expand_expr (CALL_EXPR_ARG (exp, 0), subtarget,
6272 VOIDmode, EXPAND_NORMAL);
6273 rtx value = expand_normal (CALL_EXPR_ARG (exp, 1));
6275 if (value != const1_rtx)
6277 error ("%<__builtin_longjmp%> second argument must be 1");
6278 return const0_rtx;
6281 expand_builtin_longjmp (buf_addr, value);
6282 return const0_rtx;
6284 break;
6286 case BUILT_IN_NONLOCAL_GOTO:
6287 target = expand_builtin_nonlocal_goto (exp);
6288 if (target)
6289 return target;
6290 break;
6292 /* This updates the setjmp buffer that is its argument with the value
6293 of the current stack pointer. */
6294 case BUILT_IN_UPDATE_SETJMP_BUF:
6295 if (validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
6297 rtx buf_addr
6298 = expand_normal (CALL_EXPR_ARG (exp, 0));
6300 expand_builtin_update_setjmp_buf (buf_addr);
6301 return const0_rtx;
6303 break;
6305 case BUILT_IN_TRAP:
6306 expand_builtin_trap ();
6307 return const0_rtx;
6309 case BUILT_IN_UNREACHABLE:
6310 expand_builtin_unreachable ();
6311 return const0_rtx;
6313 CASE_FLT_FN (BUILT_IN_SIGNBIT):
6314 case BUILT_IN_SIGNBITD32:
6315 case BUILT_IN_SIGNBITD64:
6316 case BUILT_IN_SIGNBITD128:
6317 target = expand_builtin_signbit (exp, target);
6318 if (target)
6319 return target;
6320 break;
6322 /* Various hooks for the DWARF 2 __throw routine. */
6323 case BUILT_IN_UNWIND_INIT:
6324 expand_builtin_unwind_init ();
6325 return const0_rtx;
6326 case BUILT_IN_DWARF_CFA:
6327 return virtual_cfa_rtx;
6328 #ifdef DWARF2_UNWIND_INFO
6329 case BUILT_IN_DWARF_SP_COLUMN:
6330 return expand_builtin_dwarf_sp_column ();
6331 case BUILT_IN_INIT_DWARF_REG_SIZES:
6332 expand_builtin_init_dwarf_reg_sizes (CALL_EXPR_ARG (exp, 0));
6333 return const0_rtx;
6334 #endif
6335 case BUILT_IN_FROB_RETURN_ADDR:
6336 return expand_builtin_frob_return_addr (CALL_EXPR_ARG (exp, 0));
6337 case BUILT_IN_EXTRACT_RETURN_ADDR:
6338 return expand_builtin_extract_return_addr (CALL_EXPR_ARG (exp, 0));
6339 case BUILT_IN_EH_RETURN:
6340 expand_builtin_eh_return (CALL_EXPR_ARG (exp, 0),
6341 CALL_EXPR_ARG (exp, 1));
6342 return const0_rtx;
6343 #ifdef EH_RETURN_DATA_REGNO
6344 case BUILT_IN_EH_RETURN_DATA_REGNO:
6345 return expand_builtin_eh_return_data_regno (exp);
6346 #endif
6347 case BUILT_IN_EXTEND_POINTER:
6348 return expand_builtin_extend_pointer (CALL_EXPR_ARG (exp, 0));
6349 case BUILT_IN_EH_POINTER:
6350 return expand_builtin_eh_pointer (exp);
6351 case BUILT_IN_EH_FILTER:
6352 return expand_builtin_eh_filter (exp);
6353 case BUILT_IN_EH_COPY_VALUES:
6354 return expand_builtin_eh_copy_values (exp);
6356 case BUILT_IN_VA_START:
6357 return expand_builtin_va_start (exp);
6358 case BUILT_IN_VA_END:
6359 return expand_builtin_va_end (exp);
6360 case BUILT_IN_VA_COPY:
6361 return expand_builtin_va_copy (exp);
6362 case BUILT_IN_EXPECT:
6363 return expand_builtin_expect (exp, target);
6364 case BUILT_IN_ASSUME_ALIGNED:
6365 return expand_builtin_assume_aligned (exp, target);
6366 case BUILT_IN_PREFETCH:
6367 expand_builtin_prefetch (exp);
6368 return const0_rtx;
6370 case BUILT_IN_INIT_TRAMPOLINE:
6371 return expand_builtin_init_trampoline (exp, true);
6372 case BUILT_IN_INIT_HEAP_TRAMPOLINE:
6373 return expand_builtin_init_trampoline (exp, false);
6374 case BUILT_IN_ADJUST_TRAMPOLINE:
6375 return expand_builtin_adjust_trampoline (exp);
6377 case BUILT_IN_FORK:
6378 case BUILT_IN_EXECL:
6379 case BUILT_IN_EXECV:
6380 case BUILT_IN_EXECLP:
6381 case BUILT_IN_EXECLE:
6382 case BUILT_IN_EXECVP:
6383 case BUILT_IN_EXECVE:
6384 target = expand_builtin_fork_or_exec (fndecl, exp, target, ignore);
6385 if (target)
6386 return target;
6387 break;
6389 case BUILT_IN_SYNC_FETCH_AND_ADD_1:
6390 case BUILT_IN_SYNC_FETCH_AND_ADD_2:
6391 case BUILT_IN_SYNC_FETCH_AND_ADD_4:
6392 case BUILT_IN_SYNC_FETCH_AND_ADD_8:
6393 case BUILT_IN_SYNC_FETCH_AND_ADD_16:
6394 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_ADD_1);
6395 target = expand_builtin_sync_operation (mode, exp, PLUS, false, target);
6396 if (target)
6397 return target;
6398 break;
6400 case BUILT_IN_SYNC_FETCH_AND_SUB_1:
6401 case BUILT_IN_SYNC_FETCH_AND_SUB_2:
6402 case BUILT_IN_SYNC_FETCH_AND_SUB_4:
6403 case BUILT_IN_SYNC_FETCH_AND_SUB_8:
6404 case BUILT_IN_SYNC_FETCH_AND_SUB_16:
6405 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_SUB_1);
6406 target = expand_builtin_sync_operation (mode, exp, MINUS, false, target);
6407 if (target)
6408 return target;
6409 break;
6411 case BUILT_IN_SYNC_FETCH_AND_OR_1:
6412 case BUILT_IN_SYNC_FETCH_AND_OR_2:
6413 case BUILT_IN_SYNC_FETCH_AND_OR_4:
6414 case BUILT_IN_SYNC_FETCH_AND_OR_8:
6415 case BUILT_IN_SYNC_FETCH_AND_OR_16:
6416 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_OR_1);
6417 target = expand_builtin_sync_operation (mode, exp, IOR, false, target);
6418 if (target)
6419 return target;
6420 break;
6422 case BUILT_IN_SYNC_FETCH_AND_AND_1:
6423 case BUILT_IN_SYNC_FETCH_AND_AND_2:
6424 case BUILT_IN_SYNC_FETCH_AND_AND_4:
6425 case BUILT_IN_SYNC_FETCH_AND_AND_8:
6426 case BUILT_IN_SYNC_FETCH_AND_AND_16:
6427 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_AND_1);
6428 target = expand_builtin_sync_operation (mode, exp, AND, false, target);
6429 if (target)
6430 return target;
6431 break;
6433 case BUILT_IN_SYNC_FETCH_AND_XOR_1:
6434 case BUILT_IN_SYNC_FETCH_AND_XOR_2:
6435 case BUILT_IN_SYNC_FETCH_AND_XOR_4:
6436 case BUILT_IN_SYNC_FETCH_AND_XOR_8:
6437 case BUILT_IN_SYNC_FETCH_AND_XOR_16:
6438 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_XOR_1);
6439 target = expand_builtin_sync_operation (mode, exp, XOR, false, target);
6440 if (target)
6441 return target;
6442 break;
6444 case BUILT_IN_SYNC_FETCH_AND_NAND_1:
6445 case BUILT_IN_SYNC_FETCH_AND_NAND_2:
6446 case BUILT_IN_SYNC_FETCH_AND_NAND_4:
6447 case BUILT_IN_SYNC_FETCH_AND_NAND_8:
6448 case BUILT_IN_SYNC_FETCH_AND_NAND_16:
6449 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_NAND_1);
6450 target = expand_builtin_sync_operation (mode, exp, NOT, false, target);
6451 if (target)
6452 return target;
6453 break;
6455 case BUILT_IN_SYNC_ADD_AND_FETCH_1:
6456 case BUILT_IN_SYNC_ADD_AND_FETCH_2:
6457 case BUILT_IN_SYNC_ADD_AND_FETCH_4:
6458 case BUILT_IN_SYNC_ADD_AND_FETCH_8:
6459 case BUILT_IN_SYNC_ADD_AND_FETCH_16:
6460 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_ADD_AND_FETCH_1);
6461 target = expand_builtin_sync_operation (mode, exp, PLUS, true, target);
6462 if (target)
6463 return target;
6464 break;
6466 case BUILT_IN_SYNC_SUB_AND_FETCH_1:
6467 case BUILT_IN_SYNC_SUB_AND_FETCH_2:
6468 case BUILT_IN_SYNC_SUB_AND_FETCH_4:
6469 case BUILT_IN_SYNC_SUB_AND_FETCH_8:
6470 case BUILT_IN_SYNC_SUB_AND_FETCH_16:
6471 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_SUB_AND_FETCH_1);
6472 target = expand_builtin_sync_operation (mode, exp, MINUS, true, target);
6473 if (target)
6474 return target;
6475 break;
6477 case BUILT_IN_SYNC_OR_AND_FETCH_1:
6478 case BUILT_IN_SYNC_OR_AND_FETCH_2:
6479 case BUILT_IN_SYNC_OR_AND_FETCH_4:
6480 case BUILT_IN_SYNC_OR_AND_FETCH_8:
6481 case BUILT_IN_SYNC_OR_AND_FETCH_16:
6482 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_OR_AND_FETCH_1);
6483 target = expand_builtin_sync_operation (mode, exp, IOR, true, target);
6484 if (target)
6485 return target;
6486 break;
6488 case BUILT_IN_SYNC_AND_AND_FETCH_1:
6489 case BUILT_IN_SYNC_AND_AND_FETCH_2:
6490 case BUILT_IN_SYNC_AND_AND_FETCH_4:
6491 case BUILT_IN_SYNC_AND_AND_FETCH_8:
6492 case BUILT_IN_SYNC_AND_AND_FETCH_16:
6493 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_AND_AND_FETCH_1);
6494 target = expand_builtin_sync_operation (mode, exp, AND, true, target);
6495 if (target)
6496 return target;
6497 break;
6499 case BUILT_IN_SYNC_XOR_AND_FETCH_1:
6500 case BUILT_IN_SYNC_XOR_AND_FETCH_2:
6501 case BUILT_IN_SYNC_XOR_AND_FETCH_4:
6502 case BUILT_IN_SYNC_XOR_AND_FETCH_8:
6503 case BUILT_IN_SYNC_XOR_AND_FETCH_16:
6504 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_XOR_AND_FETCH_1);
6505 target = expand_builtin_sync_operation (mode, exp, XOR, true, target);
6506 if (target)
6507 return target;
6508 break;
6510 case BUILT_IN_SYNC_NAND_AND_FETCH_1:
6511 case BUILT_IN_SYNC_NAND_AND_FETCH_2:
6512 case BUILT_IN_SYNC_NAND_AND_FETCH_4:
6513 case BUILT_IN_SYNC_NAND_AND_FETCH_8:
6514 case BUILT_IN_SYNC_NAND_AND_FETCH_16:
6515 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_NAND_AND_FETCH_1);
6516 target = expand_builtin_sync_operation (mode, exp, NOT, true, target);
6517 if (target)
6518 return target;
6519 break;
6521 case BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_1:
6522 case BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_2:
6523 case BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_4:
6524 case BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_8:
6525 case BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_16:
6526 if (mode == VOIDmode)
6527 mode = TYPE_MODE (boolean_type_node);
6528 if (!target || !register_operand (target, mode))
6529 target = gen_reg_rtx (mode);
6531 mode = get_builtin_sync_mode
6532 (fcode - BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_1);
6533 target = expand_builtin_compare_and_swap (mode, exp, true, target);
6534 if (target)
6535 return target;
6536 break;
6538 case BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_1:
6539 case BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_2:
6540 case BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_4:
6541 case BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_8:
6542 case BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_16:
6543 mode = get_builtin_sync_mode
6544 (fcode - BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_1);
6545 target = expand_builtin_compare_and_swap (mode, exp, false, target);
6546 if (target)
6547 return target;
6548 break;
6550 case BUILT_IN_SYNC_LOCK_TEST_AND_SET_1:
6551 case BUILT_IN_SYNC_LOCK_TEST_AND_SET_2:
6552 case BUILT_IN_SYNC_LOCK_TEST_AND_SET_4:
6553 case BUILT_IN_SYNC_LOCK_TEST_AND_SET_8:
6554 case BUILT_IN_SYNC_LOCK_TEST_AND_SET_16:
6555 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_LOCK_TEST_AND_SET_1);
6556 target = expand_builtin_sync_lock_test_and_set (mode, exp, target);
6557 if (target)
6558 return target;
6559 break;
6561 case BUILT_IN_SYNC_LOCK_RELEASE_1:
6562 case BUILT_IN_SYNC_LOCK_RELEASE_2:
6563 case BUILT_IN_SYNC_LOCK_RELEASE_4:
6564 case BUILT_IN_SYNC_LOCK_RELEASE_8:
6565 case BUILT_IN_SYNC_LOCK_RELEASE_16:
6566 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_LOCK_RELEASE_1);
6567 expand_builtin_sync_lock_release (mode, exp);
6568 return const0_rtx;
6570 case BUILT_IN_SYNC_SYNCHRONIZE:
6571 expand_builtin_sync_synchronize ();
6572 return const0_rtx;
6574 case BUILT_IN_ATOMIC_EXCHANGE_1:
6575 case BUILT_IN_ATOMIC_EXCHANGE_2:
6576 case BUILT_IN_ATOMIC_EXCHANGE_4:
6577 case BUILT_IN_ATOMIC_EXCHANGE_8:
6578 case BUILT_IN_ATOMIC_EXCHANGE_16:
6579 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_EXCHANGE_1);
6580 target = expand_builtin_atomic_exchange (mode, exp, target);
6581 if (target)
6582 return target;
6583 break;
6585 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_1:
6586 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_2:
6587 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_4:
6588 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_8:
6589 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_16:
6591 unsigned int nargs, z;
6592 vec<tree, va_gc> *vec;
6594 mode =
6595 get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_COMPARE_EXCHANGE_1);
6596 target = expand_builtin_atomic_compare_exchange (mode, exp, target);
6597 if (target)
6598 return target;
6600 /* If this is turned into an external library call, the weak parameter
6601 must be dropped to match the expected parameter list. */
6602 nargs = call_expr_nargs (exp);
6603 vec_alloc (vec, nargs - 1);
6604 for (z = 0; z < 3; z++)
6605 vec->quick_push (CALL_EXPR_ARG (exp, z));
6606 /* Skip the boolean weak parameter. */
6607 for (z = 4; z < 6; z++)
6608 vec->quick_push (CALL_EXPR_ARG (exp, z));
6609 exp = build_call_vec (TREE_TYPE (exp), CALL_EXPR_FN (exp), vec);
6610 break;
6613 case BUILT_IN_ATOMIC_LOAD_1:
6614 case BUILT_IN_ATOMIC_LOAD_2:
6615 case BUILT_IN_ATOMIC_LOAD_4:
6616 case BUILT_IN_ATOMIC_LOAD_8:
6617 case BUILT_IN_ATOMIC_LOAD_16:
6618 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_LOAD_1);
6619 target = expand_builtin_atomic_load (mode, exp, target);
6620 if (target)
6621 return target;
6622 break;
6624 case BUILT_IN_ATOMIC_STORE_1:
6625 case BUILT_IN_ATOMIC_STORE_2:
6626 case BUILT_IN_ATOMIC_STORE_4:
6627 case BUILT_IN_ATOMIC_STORE_8:
6628 case BUILT_IN_ATOMIC_STORE_16:
6629 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_STORE_1);
6630 target = expand_builtin_atomic_store (mode, exp);
6631 if (target)
6632 return const0_rtx;
6633 break;
6635 case BUILT_IN_ATOMIC_ADD_FETCH_1:
6636 case BUILT_IN_ATOMIC_ADD_FETCH_2:
6637 case BUILT_IN_ATOMIC_ADD_FETCH_4:
6638 case BUILT_IN_ATOMIC_ADD_FETCH_8:
6639 case BUILT_IN_ATOMIC_ADD_FETCH_16:
6641 enum built_in_function lib;
6642 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_ADD_FETCH_1);
6643 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_ADD_1 +
6644 (fcode - BUILT_IN_ATOMIC_ADD_FETCH_1));
6645 target = expand_builtin_atomic_fetch_op (mode, exp, target, PLUS, true,
6646 ignore, lib);
6647 if (target)
6648 return target;
6649 break;
6651 case BUILT_IN_ATOMIC_SUB_FETCH_1:
6652 case BUILT_IN_ATOMIC_SUB_FETCH_2:
6653 case BUILT_IN_ATOMIC_SUB_FETCH_4:
6654 case BUILT_IN_ATOMIC_SUB_FETCH_8:
6655 case BUILT_IN_ATOMIC_SUB_FETCH_16:
6657 enum built_in_function lib;
6658 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_SUB_FETCH_1);
6659 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_SUB_1 +
6660 (fcode - BUILT_IN_ATOMIC_SUB_FETCH_1));
6661 target = expand_builtin_atomic_fetch_op (mode, exp, target, MINUS, true,
6662 ignore, lib);
6663 if (target)
6664 return target;
6665 break;
6667 case BUILT_IN_ATOMIC_AND_FETCH_1:
6668 case BUILT_IN_ATOMIC_AND_FETCH_2:
6669 case BUILT_IN_ATOMIC_AND_FETCH_4:
6670 case BUILT_IN_ATOMIC_AND_FETCH_8:
6671 case BUILT_IN_ATOMIC_AND_FETCH_16:
6673 enum built_in_function lib;
6674 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_AND_FETCH_1);
6675 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_AND_1 +
6676 (fcode - BUILT_IN_ATOMIC_AND_FETCH_1));
6677 target = expand_builtin_atomic_fetch_op (mode, exp, target, AND, true,
6678 ignore, lib);
6679 if (target)
6680 return target;
6681 break;
6683 case BUILT_IN_ATOMIC_NAND_FETCH_1:
6684 case BUILT_IN_ATOMIC_NAND_FETCH_2:
6685 case BUILT_IN_ATOMIC_NAND_FETCH_4:
6686 case BUILT_IN_ATOMIC_NAND_FETCH_8:
6687 case BUILT_IN_ATOMIC_NAND_FETCH_16:
6689 enum built_in_function lib;
6690 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_NAND_FETCH_1);
6691 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_NAND_1 +
6692 (fcode - BUILT_IN_ATOMIC_NAND_FETCH_1));
6693 target = expand_builtin_atomic_fetch_op (mode, exp, target, NOT, true,
6694 ignore, lib);
6695 if (target)
6696 return target;
6697 break;
6699 case BUILT_IN_ATOMIC_XOR_FETCH_1:
6700 case BUILT_IN_ATOMIC_XOR_FETCH_2:
6701 case BUILT_IN_ATOMIC_XOR_FETCH_4:
6702 case BUILT_IN_ATOMIC_XOR_FETCH_8:
6703 case BUILT_IN_ATOMIC_XOR_FETCH_16:
6705 enum built_in_function lib;
6706 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_XOR_FETCH_1);
6707 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_XOR_1 +
6708 (fcode - BUILT_IN_ATOMIC_XOR_FETCH_1));
6709 target = expand_builtin_atomic_fetch_op (mode, exp, target, XOR, true,
6710 ignore, lib);
6711 if (target)
6712 return target;
6713 break;
6715 case BUILT_IN_ATOMIC_OR_FETCH_1:
6716 case BUILT_IN_ATOMIC_OR_FETCH_2:
6717 case BUILT_IN_ATOMIC_OR_FETCH_4:
6718 case BUILT_IN_ATOMIC_OR_FETCH_8:
6719 case BUILT_IN_ATOMIC_OR_FETCH_16:
6721 enum built_in_function lib;
6722 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_OR_FETCH_1);
6723 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_OR_1 +
6724 (fcode - BUILT_IN_ATOMIC_OR_FETCH_1));
6725 target = expand_builtin_atomic_fetch_op (mode, exp, target, IOR, true,
6726 ignore, lib);
6727 if (target)
6728 return target;
6729 break;
6731 case BUILT_IN_ATOMIC_FETCH_ADD_1:
6732 case BUILT_IN_ATOMIC_FETCH_ADD_2:
6733 case BUILT_IN_ATOMIC_FETCH_ADD_4:
6734 case BUILT_IN_ATOMIC_FETCH_ADD_8:
6735 case BUILT_IN_ATOMIC_FETCH_ADD_16:
6736 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_ADD_1);
6737 target = expand_builtin_atomic_fetch_op (mode, exp, target, PLUS, false,
6738 ignore, BUILT_IN_NONE);
6739 if (target)
6740 return target;
6741 break;
6743 case BUILT_IN_ATOMIC_FETCH_SUB_1:
6744 case BUILT_IN_ATOMIC_FETCH_SUB_2:
6745 case BUILT_IN_ATOMIC_FETCH_SUB_4:
6746 case BUILT_IN_ATOMIC_FETCH_SUB_8:
6747 case BUILT_IN_ATOMIC_FETCH_SUB_16:
6748 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_SUB_1);
6749 target = expand_builtin_atomic_fetch_op (mode, exp, target, MINUS, false,
6750 ignore, BUILT_IN_NONE);
6751 if (target)
6752 return target;
6753 break;
6755 case BUILT_IN_ATOMIC_FETCH_AND_1:
6756 case BUILT_IN_ATOMIC_FETCH_AND_2:
6757 case BUILT_IN_ATOMIC_FETCH_AND_4:
6758 case BUILT_IN_ATOMIC_FETCH_AND_8:
6759 case BUILT_IN_ATOMIC_FETCH_AND_16:
6760 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_AND_1);
6761 target = expand_builtin_atomic_fetch_op (mode, exp, target, AND, false,
6762 ignore, BUILT_IN_NONE);
6763 if (target)
6764 return target;
6765 break;
6767 case BUILT_IN_ATOMIC_FETCH_NAND_1:
6768 case BUILT_IN_ATOMIC_FETCH_NAND_2:
6769 case BUILT_IN_ATOMIC_FETCH_NAND_4:
6770 case BUILT_IN_ATOMIC_FETCH_NAND_8:
6771 case BUILT_IN_ATOMIC_FETCH_NAND_16:
6772 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_NAND_1);
6773 target = expand_builtin_atomic_fetch_op (mode, exp, target, NOT, false,
6774 ignore, BUILT_IN_NONE);
6775 if (target)
6776 return target;
6777 break;
6779 case BUILT_IN_ATOMIC_FETCH_XOR_1:
6780 case BUILT_IN_ATOMIC_FETCH_XOR_2:
6781 case BUILT_IN_ATOMIC_FETCH_XOR_4:
6782 case BUILT_IN_ATOMIC_FETCH_XOR_8:
6783 case BUILT_IN_ATOMIC_FETCH_XOR_16:
6784 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_XOR_1);
6785 target = expand_builtin_atomic_fetch_op (mode, exp, target, XOR, false,
6786 ignore, BUILT_IN_NONE);
6787 if (target)
6788 return target;
6789 break;
6791 case BUILT_IN_ATOMIC_FETCH_OR_1:
6792 case BUILT_IN_ATOMIC_FETCH_OR_2:
6793 case BUILT_IN_ATOMIC_FETCH_OR_4:
6794 case BUILT_IN_ATOMIC_FETCH_OR_8:
6795 case BUILT_IN_ATOMIC_FETCH_OR_16:
6796 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_OR_1);
6797 target = expand_builtin_atomic_fetch_op (mode, exp, target, IOR, false,
6798 ignore, BUILT_IN_NONE);
6799 if (target)
6800 return target;
6801 break;
6803 case BUILT_IN_ATOMIC_TEST_AND_SET:
6804 return expand_builtin_atomic_test_and_set (exp, target);
6806 case BUILT_IN_ATOMIC_CLEAR:
6807 return expand_builtin_atomic_clear (exp);
6809 case BUILT_IN_ATOMIC_ALWAYS_LOCK_FREE:
6810 return expand_builtin_atomic_always_lock_free (exp);
6812 case BUILT_IN_ATOMIC_IS_LOCK_FREE:
6813 target = expand_builtin_atomic_is_lock_free (exp);
6814 if (target)
6815 return target;
6816 break;
6818 case BUILT_IN_ATOMIC_THREAD_FENCE:
6819 expand_builtin_atomic_thread_fence (exp);
6820 return const0_rtx;
6822 case BUILT_IN_ATOMIC_SIGNAL_FENCE:
6823 expand_builtin_atomic_signal_fence (exp);
6824 return const0_rtx;
6826 case BUILT_IN_OBJECT_SIZE:
6827 return expand_builtin_object_size (exp);
6829 case BUILT_IN_MEMCPY_CHK:
6830 case BUILT_IN_MEMPCPY_CHK:
6831 case BUILT_IN_MEMMOVE_CHK:
6832 case BUILT_IN_MEMSET_CHK:
6833 target = expand_builtin_memory_chk (exp, target, mode, fcode);
6834 if (target)
6835 return target;
6836 break;
6838 case BUILT_IN_STRCPY_CHK:
6839 case BUILT_IN_STPCPY_CHK:
6840 case BUILT_IN_STRNCPY_CHK:
6841 case BUILT_IN_STPNCPY_CHK:
6842 case BUILT_IN_STRCAT_CHK:
6843 case BUILT_IN_STRNCAT_CHK:
6844 case BUILT_IN_SNPRINTF_CHK:
6845 case BUILT_IN_VSNPRINTF_CHK:
6846 maybe_emit_chk_warning (exp, fcode);
6847 break;
6849 case BUILT_IN_SPRINTF_CHK:
6850 case BUILT_IN_VSPRINTF_CHK:
6851 maybe_emit_sprintf_chk_warning (exp, fcode);
6852 break;
6854 case BUILT_IN_FREE:
6855 if (warn_free_nonheap_object)
6856 maybe_emit_free_warning (exp);
6857 break;
6859 case BUILT_IN_THREAD_POINTER:
6860 return expand_builtin_thread_pointer (exp, target);
6862 case BUILT_IN_SET_THREAD_POINTER:
6863 expand_builtin_set_thread_pointer (exp);
6864 return const0_rtx;
6866 default: /* just do library call, if unknown builtin */
6867 break;
6870 /* The switch statement above can drop through to cause the function
6871 to be called normally. */
6872 return expand_call (exp, target, ignore);
6875 /* Determine whether a tree node represents a call to a built-in
6876 function. If the tree T is a call to a built-in function with
6877 the right number of arguments of the appropriate types, return
6878 the DECL_FUNCTION_CODE of the call, e.g. BUILT_IN_SQRT.
6879 Otherwise the return value is END_BUILTINS. */
6881 enum built_in_function
6882 builtin_mathfn_code (const_tree t)
6884 const_tree fndecl, arg, parmlist;
6885 const_tree argtype, parmtype;
6886 const_call_expr_arg_iterator iter;
6888 if (TREE_CODE (t) != CALL_EXPR
6889 || TREE_CODE (CALL_EXPR_FN (t)) != ADDR_EXPR)
6890 return END_BUILTINS;
6892 fndecl = get_callee_fndecl (t);
6893 if (fndecl == NULL_TREE
6894 || TREE_CODE (fndecl) != FUNCTION_DECL
6895 || ! DECL_BUILT_IN (fndecl)
6896 || DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
6897 return END_BUILTINS;
6899 parmlist = TYPE_ARG_TYPES (TREE_TYPE (fndecl));
6900 init_const_call_expr_arg_iterator (t, &iter);
6901 for (; parmlist; parmlist = TREE_CHAIN (parmlist))
6903 /* If a function doesn't take a variable number of arguments,
6904 the last element in the list will have type `void'. */
6905 parmtype = TREE_VALUE (parmlist);
6906 if (VOID_TYPE_P (parmtype))
6908 if (more_const_call_expr_args_p (&iter))
6909 return END_BUILTINS;
6910 return DECL_FUNCTION_CODE (fndecl);
6913 if (! more_const_call_expr_args_p (&iter))
6914 return END_BUILTINS;
6916 arg = next_const_call_expr_arg (&iter);
6917 argtype = TREE_TYPE (arg);
6919 if (SCALAR_FLOAT_TYPE_P (parmtype))
6921 if (! SCALAR_FLOAT_TYPE_P (argtype))
6922 return END_BUILTINS;
6924 else if (COMPLEX_FLOAT_TYPE_P (parmtype))
6926 if (! COMPLEX_FLOAT_TYPE_P (argtype))
6927 return END_BUILTINS;
6929 else if (POINTER_TYPE_P (parmtype))
6931 if (! POINTER_TYPE_P (argtype))
6932 return END_BUILTINS;
6934 else if (INTEGRAL_TYPE_P (parmtype))
6936 if (! INTEGRAL_TYPE_P (argtype))
6937 return END_BUILTINS;
6939 else
6940 return END_BUILTINS;
6943 /* Variable-length argument list. */
6944 return DECL_FUNCTION_CODE (fndecl);
6947 /* Fold a call to __builtin_constant_p, if we know its argument ARG will
6948 evaluate to a constant. */
6950 static tree
6951 fold_builtin_constant_p (tree arg)
6953 /* We return 1 for a numeric type that's known to be a constant
6954 value at compile-time or for an aggregate type that's a
6955 literal constant. */
6956 STRIP_NOPS (arg);
6958 /* If we know this is a constant, emit the constant of one. */
6959 if (CONSTANT_CLASS_P (arg)
6960 || (TREE_CODE (arg) == CONSTRUCTOR
6961 && TREE_CONSTANT (arg)))
6962 return integer_one_node;
6963 if (TREE_CODE (arg) == ADDR_EXPR)
6965 tree op = TREE_OPERAND (arg, 0);
6966 if (TREE_CODE (op) == STRING_CST
6967 || (TREE_CODE (op) == ARRAY_REF
6968 && integer_zerop (TREE_OPERAND (op, 1))
6969 && TREE_CODE (TREE_OPERAND (op, 0)) == STRING_CST))
6970 return integer_one_node;
6973 /* If this expression has side effects, show we don't know it to be a
6974 constant. Likewise if it's a pointer or aggregate type since in
6975 those case we only want literals, since those are only optimized
6976 when generating RTL, not later.
6977 And finally, if we are compiling an initializer, not code, we
6978 need to return a definite result now; there's not going to be any
6979 more optimization done. */
6980 if (TREE_SIDE_EFFECTS (arg)
6981 || AGGREGATE_TYPE_P (TREE_TYPE (arg))
6982 || POINTER_TYPE_P (TREE_TYPE (arg))
6983 || cfun == 0
6984 || folding_initializer
6985 || force_folding_builtin_constant_p)
6986 return integer_zero_node;
6988 return NULL_TREE;
6991 /* Create builtin_expect with PRED and EXPECTED as its arguments and
6992 return it as a truthvalue. */
6994 static tree
6995 build_builtin_expect_predicate (location_t loc, tree pred, tree expected)
6997 tree fn, arg_types, pred_type, expected_type, call_expr, ret_type;
6999 fn = builtin_decl_explicit (BUILT_IN_EXPECT);
7000 arg_types = TYPE_ARG_TYPES (TREE_TYPE (fn));
7001 ret_type = TREE_TYPE (TREE_TYPE (fn));
7002 pred_type = TREE_VALUE (arg_types);
7003 expected_type = TREE_VALUE (TREE_CHAIN (arg_types));
7005 pred = fold_convert_loc (loc, pred_type, pred);
7006 expected = fold_convert_loc (loc, expected_type, expected);
7007 call_expr = build_call_expr_loc (loc, fn, 2, pred, expected);
7009 return build2 (NE_EXPR, TREE_TYPE (pred), call_expr,
7010 build_int_cst (ret_type, 0));
7013 /* Fold a call to builtin_expect with arguments ARG0 and ARG1. Return
7014 NULL_TREE if no simplification is possible. */
7016 static tree
7017 fold_builtin_expect (location_t loc, tree arg0, tree arg1)
7019 tree inner, fndecl, inner_arg0;
7020 enum tree_code code;
7022 /* Distribute the expected value over short-circuiting operators.
7023 See through the cast from truthvalue_type_node to long. */
7024 inner_arg0 = arg0;
7025 while (TREE_CODE (inner_arg0) == NOP_EXPR
7026 && INTEGRAL_TYPE_P (TREE_TYPE (inner_arg0))
7027 && INTEGRAL_TYPE_P (TREE_TYPE (TREE_OPERAND (inner_arg0, 0))))
7028 inner_arg0 = TREE_OPERAND (inner_arg0, 0);
7030 /* If this is a builtin_expect within a builtin_expect keep the
7031 inner one. See through a comparison against a constant. It
7032 might have been added to create a thruthvalue. */
7033 inner = inner_arg0;
7035 if (COMPARISON_CLASS_P (inner)
7036 && TREE_CODE (TREE_OPERAND (inner, 1)) == INTEGER_CST)
7037 inner = TREE_OPERAND (inner, 0);
7039 if (TREE_CODE (inner) == CALL_EXPR
7040 && (fndecl = get_callee_fndecl (inner))
7041 && DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_NORMAL
7042 && DECL_FUNCTION_CODE (fndecl) == BUILT_IN_EXPECT)
7043 return arg0;
7045 inner = inner_arg0;
7046 code = TREE_CODE (inner);
7047 if (code == TRUTH_ANDIF_EXPR || code == TRUTH_ORIF_EXPR)
7049 tree op0 = TREE_OPERAND (inner, 0);
7050 tree op1 = TREE_OPERAND (inner, 1);
7052 op0 = build_builtin_expect_predicate (loc, op0, arg1);
7053 op1 = build_builtin_expect_predicate (loc, op1, arg1);
7054 inner = build2 (code, TREE_TYPE (inner), op0, op1);
7056 return fold_convert_loc (loc, TREE_TYPE (arg0), inner);
7059 /* If the argument isn't invariant then there's nothing else we can do. */
7060 if (!TREE_CONSTANT (inner_arg0))
7061 return NULL_TREE;
7063 /* If we expect that a comparison against the argument will fold to
7064 a constant return the constant. In practice, this means a true
7065 constant or the address of a non-weak symbol. */
7066 inner = inner_arg0;
7067 STRIP_NOPS (inner);
7068 if (TREE_CODE (inner) == ADDR_EXPR)
7072 inner = TREE_OPERAND (inner, 0);
7074 while (TREE_CODE (inner) == COMPONENT_REF
7075 || TREE_CODE (inner) == ARRAY_REF);
7076 if ((TREE_CODE (inner) == VAR_DECL
7077 || TREE_CODE (inner) == FUNCTION_DECL)
7078 && DECL_WEAK (inner))
7079 return NULL_TREE;
7082 /* Otherwise, ARG0 already has the proper type for the return value. */
7083 return arg0;
7086 /* Fold a call to __builtin_classify_type with argument ARG. */
7088 static tree
7089 fold_builtin_classify_type (tree arg)
7091 if (arg == 0)
7092 return build_int_cst (integer_type_node, no_type_class);
7094 return build_int_cst (integer_type_node, type_to_class (TREE_TYPE (arg)));
7097 /* Fold a call to __builtin_strlen with argument ARG. */
7099 static tree
7100 fold_builtin_strlen (location_t loc, tree type, tree arg)
7102 if (!validate_arg (arg, POINTER_TYPE))
7103 return NULL_TREE;
7104 else
7106 tree len = c_strlen (arg, 0);
7108 if (len)
7109 return fold_convert_loc (loc, type, len);
7111 return NULL_TREE;
7115 /* Fold a call to __builtin_inf or __builtin_huge_val. */
7117 static tree
7118 fold_builtin_inf (location_t loc, tree type, int warn)
7120 REAL_VALUE_TYPE real;
7122 /* __builtin_inff is intended to be usable to define INFINITY on all
7123 targets. If an infinity is not available, INFINITY expands "to a
7124 positive constant of type float that overflows at translation
7125 time", footnote "In this case, using INFINITY will violate the
7126 constraint in 6.4.4 and thus require a diagnostic." (C99 7.12#4).
7127 Thus we pedwarn to ensure this constraint violation is
7128 diagnosed. */
7129 if (!MODE_HAS_INFINITIES (TYPE_MODE (type)) && warn)
7130 pedwarn (loc, 0, "target format does not support infinity");
7132 real_inf (&real);
7133 return build_real (type, real);
7136 /* Fold a call to __builtin_nan or __builtin_nans with argument ARG. */
7138 static tree
7139 fold_builtin_nan (tree arg, tree type, int quiet)
7141 REAL_VALUE_TYPE real;
7142 const char *str;
7144 if (!validate_arg (arg, POINTER_TYPE))
7145 return NULL_TREE;
7146 str = c_getstr (arg);
7147 if (!str)
7148 return NULL_TREE;
7150 if (!real_nan (&real, str, quiet, TYPE_MODE (type)))
7151 return NULL_TREE;
7153 return build_real (type, real);
7156 /* Return true if the floating point expression T has an integer value.
7157 We also allow +Inf, -Inf and NaN to be considered integer values. */
7159 static bool
7160 integer_valued_real_p (tree t)
7162 switch (TREE_CODE (t))
7164 case FLOAT_EXPR:
7165 return true;
7167 case ABS_EXPR:
7168 case SAVE_EXPR:
7169 return integer_valued_real_p (TREE_OPERAND (t, 0));
7171 case COMPOUND_EXPR:
7172 case MODIFY_EXPR:
7173 case BIND_EXPR:
7174 return integer_valued_real_p (TREE_OPERAND (t, 1));
7176 case PLUS_EXPR:
7177 case MINUS_EXPR:
7178 case MULT_EXPR:
7179 case MIN_EXPR:
7180 case MAX_EXPR:
7181 return integer_valued_real_p (TREE_OPERAND (t, 0))
7182 && integer_valued_real_p (TREE_OPERAND (t, 1));
7184 case COND_EXPR:
7185 return integer_valued_real_p (TREE_OPERAND (t, 1))
7186 && integer_valued_real_p (TREE_OPERAND (t, 2));
7188 case REAL_CST:
7189 return real_isinteger (TREE_REAL_CST_PTR (t), TYPE_MODE (TREE_TYPE (t)));
7191 case NOP_EXPR:
7193 tree type = TREE_TYPE (TREE_OPERAND (t, 0));
7194 if (TREE_CODE (type) == INTEGER_TYPE)
7195 return true;
7196 if (TREE_CODE (type) == REAL_TYPE)
7197 return integer_valued_real_p (TREE_OPERAND (t, 0));
7198 break;
7201 case CALL_EXPR:
7202 switch (builtin_mathfn_code (t))
7204 CASE_FLT_FN (BUILT_IN_CEIL):
7205 CASE_FLT_FN (BUILT_IN_FLOOR):
7206 CASE_FLT_FN (BUILT_IN_NEARBYINT):
7207 CASE_FLT_FN (BUILT_IN_RINT):
7208 CASE_FLT_FN (BUILT_IN_ROUND):
7209 CASE_FLT_FN (BUILT_IN_TRUNC):
7210 return true;
7212 CASE_FLT_FN (BUILT_IN_FMIN):
7213 CASE_FLT_FN (BUILT_IN_FMAX):
7214 return integer_valued_real_p (CALL_EXPR_ARG (t, 0))
7215 && integer_valued_real_p (CALL_EXPR_ARG (t, 1));
7217 default:
7218 break;
7220 break;
7222 default:
7223 break;
7225 return false;
7228 /* FNDECL is assumed to be a builtin where truncation can be propagated
7229 across (for instance floor((double)f) == (double)floorf (f).
7230 Do the transformation for a call with argument ARG. */
7232 static tree
7233 fold_trunc_transparent_mathfn (location_t loc, tree fndecl, tree arg)
7235 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
7237 if (!validate_arg (arg, REAL_TYPE))
7238 return NULL_TREE;
7240 /* Integer rounding functions are idempotent. */
7241 if (fcode == builtin_mathfn_code (arg))
7242 return arg;
7244 /* If argument is already integer valued, and we don't need to worry
7245 about setting errno, there's no need to perform rounding. */
7246 if (! flag_errno_math && integer_valued_real_p (arg))
7247 return arg;
7249 if (optimize)
7251 tree arg0 = strip_float_extensions (arg);
7252 tree ftype = TREE_TYPE (TREE_TYPE (fndecl));
7253 tree newtype = TREE_TYPE (arg0);
7254 tree decl;
7256 if (TYPE_PRECISION (newtype) < TYPE_PRECISION (ftype)
7257 && (decl = mathfn_built_in (newtype, fcode)))
7258 return fold_convert_loc (loc, ftype,
7259 build_call_expr_loc (loc, decl, 1,
7260 fold_convert_loc (loc,
7261 newtype,
7262 arg0)));
7264 return NULL_TREE;
7267 /* FNDECL is assumed to be builtin which can narrow the FP type of
7268 the argument, for instance lround((double)f) -> lroundf (f).
7269 Do the transformation for a call with argument ARG. */
7271 static tree
7272 fold_fixed_mathfn (location_t loc, tree fndecl, tree arg)
7274 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
7276 if (!validate_arg (arg, REAL_TYPE))
7277 return NULL_TREE;
7279 /* If argument is already integer valued, and we don't need to worry
7280 about setting errno, there's no need to perform rounding. */
7281 if (! flag_errno_math && integer_valued_real_p (arg))
7282 return fold_build1_loc (loc, FIX_TRUNC_EXPR,
7283 TREE_TYPE (TREE_TYPE (fndecl)), arg);
7285 if (optimize)
7287 tree ftype = TREE_TYPE (arg);
7288 tree arg0 = strip_float_extensions (arg);
7289 tree newtype = TREE_TYPE (arg0);
7290 tree decl;
7292 if (TYPE_PRECISION (newtype) < TYPE_PRECISION (ftype)
7293 && (decl = mathfn_built_in (newtype, fcode)))
7294 return build_call_expr_loc (loc, decl, 1,
7295 fold_convert_loc (loc, newtype, arg0));
7298 /* Canonicalize iround (x) to lround (x) on ILP32 targets where
7299 sizeof (int) == sizeof (long). */
7300 if (TYPE_PRECISION (integer_type_node)
7301 == TYPE_PRECISION (long_integer_type_node))
7303 tree newfn = NULL_TREE;
7304 switch (fcode)
7306 CASE_FLT_FN (BUILT_IN_ICEIL):
7307 newfn = mathfn_built_in (TREE_TYPE (arg), BUILT_IN_LCEIL);
7308 break;
7310 CASE_FLT_FN (BUILT_IN_IFLOOR):
7311 newfn = mathfn_built_in (TREE_TYPE (arg), BUILT_IN_LFLOOR);
7312 break;
7314 CASE_FLT_FN (BUILT_IN_IROUND):
7315 newfn = mathfn_built_in (TREE_TYPE (arg), BUILT_IN_LROUND);
7316 break;
7318 CASE_FLT_FN (BUILT_IN_IRINT):
7319 newfn = mathfn_built_in (TREE_TYPE (arg), BUILT_IN_LRINT);
7320 break;
7322 default:
7323 break;
7326 if (newfn)
7328 tree newcall = build_call_expr_loc (loc, newfn, 1, arg);
7329 return fold_convert_loc (loc,
7330 TREE_TYPE (TREE_TYPE (fndecl)), newcall);
7334 /* Canonicalize llround (x) to lround (x) on LP64 targets where
7335 sizeof (long long) == sizeof (long). */
7336 if (TYPE_PRECISION (long_long_integer_type_node)
7337 == TYPE_PRECISION (long_integer_type_node))
7339 tree newfn = NULL_TREE;
7340 switch (fcode)
7342 CASE_FLT_FN (BUILT_IN_LLCEIL):
7343 newfn = mathfn_built_in (TREE_TYPE (arg), BUILT_IN_LCEIL);
7344 break;
7346 CASE_FLT_FN (BUILT_IN_LLFLOOR):
7347 newfn = mathfn_built_in (TREE_TYPE (arg), BUILT_IN_LFLOOR);
7348 break;
7350 CASE_FLT_FN (BUILT_IN_LLROUND):
7351 newfn = mathfn_built_in (TREE_TYPE (arg), BUILT_IN_LROUND);
7352 break;
7354 CASE_FLT_FN (BUILT_IN_LLRINT):
7355 newfn = mathfn_built_in (TREE_TYPE (arg), BUILT_IN_LRINT);
7356 break;
7358 default:
7359 break;
7362 if (newfn)
7364 tree newcall = build_call_expr_loc (loc, newfn, 1, arg);
7365 return fold_convert_loc (loc,
7366 TREE_TYPE (TREE_TYPE (fndecl)), newcall);
7370 return NULL_TREE;
7373 /* Fold call to builtin cabs, cabsf or cabsl with argument ARG. TYPE is the
7374 return type. Return NULL_TREE if no simplification can be made. */
7376 static tree
7377 fold_builtin_cabs (location_t loc, tree arg, tree type, tree fndecl)
7379 tree res;
7381 if (!validate_arg (arg, COMPLEX_TYPE)
7382 || TREE_CODE (TREE_TYPE (TREE_TYPE (arg))) != REAL_TYPE)
7383 return NULL_TREE;
7385 /* Calculate the result when the argument is a constant. */
7386 if (TREE_CODE (arg) == COMPLEX_CST
7387 && (res = do_mpfr_arg2 (TREE_REALPART (arg), TREE_IMAGPART (arg),
7388 type, mpfr_hypot)))
7389 return res;
7391 if (TREE_CODE (arg) == COMPLEX_EXPR)
7393 tree real = TREE_OPERAND (arg, 0);
7394 tree imag = TREE_OPERAND (arg, 1);
7396 /* If either part is zero, cabs is fabs of the other. */
7397 if (real_zerop (real))
7398 return fold_build1_loc (loc, ABS_EXPR, type, imag);
7399 if (real_zerop (imag))
7400 return fold_build1_loc (loc, ABS_EXPR, type, real);
7402 /* cabs(x+xi) -> fabs(x)*sqrt(2). */
7403 if (flag_unsafe_math_optimizations
7404 && operand_equal_p (real, imag, OEP_PURE_SAME))
7406 const REAL_VALUE_TYPE sqrt2_trunc
7407 = real_value_truncate (TYPE_MODE (type), dconst_sqrt2 ());
7408 STRIP_NOPS (real);
7409 return fold_build2_loc (loc, MULT_EXPR, type,
7410 fold_build1_loc (loc, ABS_EXPR, type, real),
7411 build_real (type, sqrt2_trunc));
7415 /* Optimize cabs(-z) and cabs(conj(z)) as cabs(z). */
7416 if (TREE_CODE (arg) == NEGATE_EXPR
7417 || TREE_CODE (arg) == CONJ_EXPR)
7418 return build_call_expr_loc (loc, fndecl, 1, TREE_OPERAND (arg, 0));
7420 /* Don't do this when optimizing for size. */
7421 if (flag_unsafe_math_optimizations
7422 && optimize && optimize_function_for_speed_p (cfun))
7424 tree sqrtfn = mathfn_built_in (type, BUILT_IN_SQRT);
7426 if (sqrtfn != NULL_TREE)
7428 tree rpart, ipart, result;
7430 arg = builtin_save_expr (arg);
7432 rpart = fold_build1_loc (loc, REALPART_EXPR, type, arg);
7433 ipart = fold_build1_loc (loc, IMAGPART_EXPR, type, arg);
7435 rpart = builtin_save_expr (rpart);
7436 ipart = builtin_save_expr (ipart);
7438 result = fold_build2_loc (loc, PLUS_EXPR, type,
7439 fold_build2_loc (loc, MULT_EXPR, type,
7440 rpart, rpart),
7441 fold_build2_loc (loc, MULT_EXPR, type,
7442 ipart, ipart));
7444 return build_call_expr_loc (loc, sqrtfn, 1, result);
7448 return NULL_TREE;
7451 /* Build a complex (inf +- 0i) for the result of cproj. TYPE is the
7452 complex tree type of the result. If NEG is true, the imaginary
7453 zero is negative. */
7455 static tree
7456 build_complex_cproj (tree type, bool neg)
7458 REAL_VALUE_TYPE rinf, rzero = dconst0;
7460 real_inf (&rinf);
7461 rzero.sign = neg;
7462 return build_complex (type, build_real (TREE_TYPE (type), rinf),
7463 build_real (TREE_TYPE (type), rzero));
7466 /* Fold call to builtin cproj, cprojf or cprojl with argument ARG. TYPE is the
7467 return type. Return NULL_TREE if no simplification can be made. */
7469 static tree
7470 fold_builtin_cproj (location_t loc, tree arg, tree type)
7472 if (!validate_arg (arg, COMPLEX_TYPE)
7473 || TREE_CODE (TREE_TYPE (TREE_TYPE (arg))) != REAL_TYPE)
7474 return NULL_TREE;
7476 /* If there are no infinities, return arg. */
7477 if (! HONOR_INFINITIES (TYPE_MODE (TREE_TYPE (type))))
7478 return non_lvalue_loc (loc, arg);
7480 /* Calculate the result when the argument is a constant. */
7481 if (TREE_CODE (arg) == COMPLEX_CST)
7483 const REAL_VALUE_TYPE *real = TREE_REAL_CST_PTR (TREE_REALPART (arg));
7484 const REAL_VALUE_TYPE *imag = TREE_REAL_CST_PTR (TREE_IMAGPART (arg));
7486 if (real_isinf (real) || real_isinf (imag))
7487 return build_complex_cproj (type, imag->sign);
7488 else
7489 return arg;
7491 else if (TREE_CODE (arg) == COMPLEX_EXPR)
7493 tree real = TREE_OPERAND (arg, 0);
7494 tree imag = TREE_OPERAND (arg, 1);
7496 STRIP_NOPS (real);
7497 STRIP_NOPS (imag);
7499 /* If the real part is inf and the imag part is known to be
7500 nonnegative, return (inf + 0i). Remember side-effects are
7501 possible in the imag part. */
7502 if (TREE_CODE (real) == REAL_CST
7503 && real_isinf (TREE_REAL_CST_PTR (real))
7504 && tree_expr_nonnegative_p (imag))
7505 return omit_one_operand_loc (loc, type,
7506 build_complex_cproj (type, false),
7507 arg);
7509 /* If the imag part is inf, return (inf+I*copysign(0,imag)).
7510 Remember side-effects are possible in the real part. */
7511 if (TREE_CODE (imag) == REAL_CST
7512 && real_isinf (TREE_REAL_CST_PTR (imag)))
7513 return
7514 omit_one_operand_loc (loc, type,
7515 build_complex_cproj (type, TREE_REAL_CST_PTR
7516 (imag)->sign), arg);
7519 return NULL_TREE;
7522 /* Fold a builtin function call to sqrt, sqrtf, or sqrtl with argument ARG.
7523 Return NULL_TREE if no simplification can be made. */
7525 static tree
7526 fold_builtin_sqrt (location_t loc, tree arg, tree type)
7529 enum built_in_function fcode;
7530 tree res;
7532 if (!validate_arg (arg, REAL_TYPE))
7533 return NULL_TREE;
7535 /* Calculate the result when the argument is a constant. */
7536 if ((res = do_mpfr_arg1 (arg, type, mpfr_sqrt, &dconst0, NULL, true)))
7537 return res;
7539 /* Optimize sqrt(expN(x)) = expN(x*0.5). */
7540 fcode = builtin_mathfn_code (arg);
7541 if (flag_unsafe_math_optimizations && BUILTIN_EXPONENT_P (fcode))
7543 tree expfn = TREE_OPERAND (CALL_EXPR_FN (arg), 0);
7544 arg = fold_build2_loc (loc, MULT_EXPR, type,
7545 CALL_EXPR_ARG (arg, 0),
7546 build_real (type, dconsthalf));
7547 return build_call_expr_loc (loc, expfn, 1, arg);
7550 /* Optimize sqrt(Nroot(x)) -> pow(x,1/(2*N)). */
7551 if (flag_unsafe_math_optimizations && BUILTIN_ROOT_P (fcode))
7553 tree powfn = mathfn_built_in (type, BUILT_IN_POW);
7555 if (powfn)
7557 tree arg0 = CALL_EXPR_ARG (arg, 0);
7558 tree tree_root;
7559 /* The inner root was either sqrt or cbrt. */
7560 /* This was a conditional expression but it triggered a bug
7561 in Sun C 5.5. */
7562 REAL_VALUE_TYPE dconstroot;
7563 if (BUILTIN_SQRT_P (fcode))
7564 dconstroot = dconsthalf;
7565 else
7566 dconstroot = dconst_third ();
7568 /* Adjust for the outer root. */
7569 SET_REAL_EXP (&dconstroot, REAL_EXP (&dconstroot) - 1);
7570 dconstroot = real_value_truncate (TYPE_MODE (type), dconstroot);
7571 tree_root = build_real (type, dconstroot);
7572 return build_call_expr_loc (loc, powfn, 2, arg0, tree_root);
7576 /* Optimize sqrt(pow(x,y)) = pow(|x|,y*0.5). */
7577 if (flag_unsafe_math_optimizations
7578 && (fcode == BUILT_IN_POW
7579 || fcode == BUILT_IN_POWF
7580 || fcode == BUILT_IN_POWL))
7582 tree powfn = TREE_OPERAND (CALL_EXPR_FN (arg), 0);
7583 tree arg0 = CALL_EXPR_ARG (arg, 0);
7584 tree arg1 = CALL_EXPR_ARG (arg, 1);
7585 tree narg1;
7586 if (!tree_expr_nonnegative_p (arg0))
7587 arg0 = build1 (ABS_EXPR, type, arg0);
7588 narg1 = fold_build2_loc (loc, MULT_EXPR, type, arg1,
7589 build_real (type, dconsthalf));
7590 return build_call_expr_loc (loc, powfn, 2, arg0, narg1);
7593 return NULL_TREE;
7596 /* Fold a builtin function call to cbrt, cbrtf, or cbrtl with argument ARG.
7597 Return NULL_TREE if no simplification can be made. */
7599 static tree
7600 fold_builtin_cbrt (location_t loc, tree arg, tree type)
7602 const enum built_in_function fcode = builtin_mathfn_code (arg);
7603 tree res;
7605 if (!validate_arg (arg, REAL_TYPE))
7606 return NULL_TREE;
7608 /* Calculate the result when the argument is a constant. */
7609 if ((res = do_mpfr_arg1 (arg, type, mpfr_cbrt, NULL, NULL, 0)))
7610 return res;
7612 if (flag_unsafe_math_optimizations)
7614 /* Optimize cbrt(expN(x)) -> expN(x/3). */
7615 if (BUILTIN_EXPONENT_P (fcode))
7617 tree expfn = TREE_OPERAND (CALL_EXPR_FN (arg), 0);
7618 const REAL_VALUE_TYPE third_trunc =
7619 real_value_truncate (TYPE_MODE (type), dconst_third ());
7620 arg = fold_build2_loc (loc, MULT_EXPR, type,
7621 CALL_EXPR_ARG (arg, 0),
7622 build_real (type, third_trunc));
7623 return build_call_expr_loc (loc, expfn, 1, arg);
7626 /* Optimize cbrt(sqrt(x)) -> pow(x,1/6). */
7627 if (BUILTIN_SQRT_P (fcode))
7629 tree powfn = mathfn_built_in (type, BUILT_IN_POW);
7631 if (powfn)
7633 tree arg0 = CALL_EXPR_ARG (arg, 0);
7634 tree tree_root;
7635 REAL_VALUE_TYPE dconstroot = dconst_third ();
7637 SET_REAL_EXP (&dconstroot, REAL_EXP (&dconstroot) - 1);
7638 dconstroot = real_value_truncate (TYPE_MODE (type), dconstroot);
7639 tree_root = build_real (type, dconstroot);
7640 return build_call_expr_loc (loc, powfn, 2, arg0, tree_root);
7644 /* Optimize cbrt(cbrt(x)) -> pow(x,1/9) iff x is nonnegative. */
7645 if (BUILTIN_CBRT_P (fcode))
7647 tree arg0 = CALL_EXPR_ARG (arg, 0);
7648 if (tree_expr_nonnegative_p (arg0))
7650 tree powfn = mathfn_built_in (type, BUILT_IN_POW);
7652 if (powfn)
7654 tree tree_root;
7655 REAL_VALUE_TYPE dconstroot;
7657 real_arithmetic (&dconstroot, MULT_EXPR,
7658 dconst_third_ptr (), dconst_third_ptr ());
7659 dconstroot = real_value_truncate (TYPE_MODE (type), dconstroot);
7660 tree_root = build_real (type, dconstroot);
7661 return build_call_expr_loc (loc, powfn, 2, arg0, tree_root);
7666 /* Optimize cbrt(pow(x,y)) -> pow(x,y/3) iff x is nonnegative. */
7667 if (fcode == BUILT_IN_POW
7668 || fcode == BUILT_IN_POWF
7669 || fcode == BUILT_IN_POWL)
7671 tree arg00 = CALL_EXPR_ARG (arg, 0);
7672 tree arg01 = CALL_EXPR_ARG (arg, 1);
7673 if (tree_expr_nonnegative_p (arg00))
7675 tree powfn = TREE_OPERAND (CALL_EXPR_FN (arg), 0);
7676 const REAL_VALUE_TYPE dconstroot
7677 = real_value_truncate (TYPE_MODE (type), dconst_third ());
7678 tree narg01 = fold_build2_loc (loc, MULT_EXPR, type, arg01,
7679 build_real (type, dconstroot));
7680 return build_call_expr_loc (loc, powfn, 2, arg00, narg01);
7684 return NULL_TREE;
7687 /* Fold function call to builtin cos, cosf, or cosl with argument ARG.
7688 TYPE is the type of the return value. Return NULL_TREE if no
7689 simplification can be made. */
7691 static tree
7692 fold_builtin_cos (location_t loc,
7693 tree arg, tree type, tree fndecl)
7695 tree res, narg;
7697 if (!validate_arg (arg, REAL_TYPE))
7698 return NULL_TREE;
7700 /* Calculate the result when the argument is a constant. */
7701 if ((res = do_mpfr_arg1 (arg, type, mpfr_cos, NULL, NULL, 0)))
7702 return res;
7704 /* Optimize cos(-x) into cos (x). */
7705 if ((narg = fold_strip_sign_ops (arg)))
7706 return build_call_expr_loc (loc, fndecl, 1, narg);
7708 return NULL_TREE;
7711 /* Fold function call to builtin cosh, coshf, or coshl with argument ARG.
7712 Return NULL_TREE if no simplification can be made. */
7714 static tree
7715 fold_builtin_cosh (location_t loc, tree arg, tree type, tree fndecl)
7717 if (validate_arg (arg, REAL_TYPE))
7719 tree res, narg;
7721 /* Calculate the result when the argument is a constant. */
7722 if ((res = do_mpfr_arg1 (arg, type, mpfr_cosh, NULL, NULL, 0)))
7723 return res;
7725 /* Optimize cosh(-x) into cosh (x). */
7726 if ((narg = fold_strip_sign_ops (arg)))
7727 return build_call_expr_loc (loc, fndecl, 1, narg);
7730 return NULL_TREE;
7733 /* Fold function call to builtin ccos (or ccosh if HYPER is TRUE) with
7734 argument ARG. TYPE is the type of the return value. Return
7735 NULL_TREE if no simplification can be made. */
7737 static tree
7738 fold_builtin_ccos (location_t loc, tree arg, tree type, tree fndecl,
7739 bool hyper)
7741 if (validate_arg (arg, COMPLEX_TYPE)
7742 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg))) == REAL_TYPE)
7744 tree tmp;
7746 /* Calculate the result when the argument is a constant. */
7747 if ((tmp = do_mpc_arg1 (arg, type, (hyper ? mpc_cosh : mpc_cos))))
7748 return tmp;
7750 /* Optimize fn(-x) into fn(x). */
7751 if ((tmp = fold_strip_sign_ops (arg)))
7752 return build_call_expr_loc (loc, fndecl, 1, tmp);
7755 return NULL_TREE;
7758 /* Fold function call to builtin tan, tanf, or tanl with argument ARG.
7759 Return NULL_TREE if no simplification can be made. */
7761 static tree
7762 fold_builtin_tan (tree arg, tree type)
7764 enum built_in_function fcode;
7765 tree res;
7767 if (!validate_arg (arg, REAL_TYPE))
7768 return NULL_TREE;
7770 /* Calculate the result when the argument is a constant. */
7771 if ((res = do_mpfr_arg1 (arg, type, mpfr_tan, NULL, NULL, 0)))
7772 return res;
7774 /* Optimize tan(atan(x)) = x. */
7775 fcode = builtin_mathfn_code (arg);
7776 if (flag_unsafe_math_optimizations
7777 && (fcode == BUILT_IN_ATAN
7778 || fcode == BUILT_IN_ATANF
7779 || fcode == BUILT_IN_ATANL))
7780 return CALL_EXPR_ARG (arg, 0);
7782 return NULL_TREE;
7785 /* Fold function call to builtin sincos, sincosf, or sincosl. Return
7786 NULL_TREE if no simplification can be made. */
7788 static tree
7789 fold_builtin_sincos (location_t loc,
7790 tree arg0, tree arg1, tree arg2)
7792 tree type;
7793 tree res, fn, call;
7795 if (!validate_arg (arg0, REAL_TYPE)
7796 || !validate_arg (arg1, POINTER_TYPE)
7797 || !validate_arg (arg2, POINTER_TYPE))
7798 return NULL_TREE;
7800 type = TREE_TYPE (arg0);
7802 /* Calculate the result when the argument is a constant. */
7803 if ((res = do_mpfr_sincos (arg0, arg1, arg2)))
7804 return res;
7806 /* Canonicalize sincos to cexpi. */
7807 if (!TARGET_C99_FUNCTIONS)
7808 return NULL_TREE;
7809 fn = mathfn_built_in (type, BUILT_IN_CEXPI);
7810 if (!fn)
7811 return NULL_TREE;
7813 call = build_call_expr_loc (loc, fn, 1, arg0);
7814 call = builtin_save_expr (call);
7816 return build2 (COMPOUND_EXPR, void_type_node,
7817 build2 (MODIFY_EXPR, void_type_node,
7818 build_fold_indirect_ref_loc (loc, arg1),
7819 build1 (IMAGPART_EXPR, type, call)),
7820 build2 (MODIFY_EXPR, void_type_node,
7821 build_fold_indirect_ref_loc (loc, arg2),
7822 build1 (REALPART_EXPR, type, call)));
7825 /* Fold function call to builtin cexp, cexpf, or cexpl. Return
7826 NULL_TREE if no simplification can be made. */
7828 static tree
7829 fold_builtin_cexp (location_t loc, tree arg0, tree type)
7831 tree rtype;
7832 tree realp, imagp, ifn;
7833 tree res;
7835 if (!validate_arg (arg0, COMPLEX_TYPE)
7836 || TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) != REAL_TYPE)
7837 return NULL_TREE;
7839 /* Calculate the result when the argument is a constant. */
7840 if ((res = do_mpc_arg1 (arg0, type, mpc_exp)))
7841 return res;
7843 rtype = TREE_TYPE (TREE_TYPE (arg0));
7845 /* In case we can figure out the real part of arg0 and it is constant zero
7846 fold to cexpi. */
7847 if (!TARGET_C99_FUNCTIONS)
7848 return NULL_TREE;
7849 ifn = mathfn_built_in (rtype, BUILT_IN_CEXPI);
7850 if (!ifn)
7851 return NULL_TREE;
7853 if ((realp = fold_unary_loc (loc, REALPART_EXPR, rtype, arg0))
7854 && real_zerop (realp))
7856 tree narg = fold_build1_loc (loc, IMAGPART_EXPR, rtype, arg0);
7857 return build_call_expr_loc (loc, ifn, 1, narg);
7860 /* In case we can easily decompose real and imaginary parts split cexp
7861 to exp (r) * cexpi (i). */
7862 if (flag_unsafe_math_optimizations
7863 && realp)
7865 tree rfn, rcall, icall;
7867 rfn = mathfn_built_in (rtype, BUILT_IN_EXP);
7868 if (!rfn)
7869 return NULL_TREE;
7871 imagp = fold_unary_loc (loc, IMAGPART_EXPR, rtype, arg0);
7872 if (!imagp)
7873 return NULL_TREE;
7875 icall = build_call_expr_loc (loc, ifn, 1, imagp);
7876 icall = builtin_save_expr (icall);
7877 rcall = build_call_expr_loc (loc, rfn, 1, realp);
7878 rcall = builtin_save_expr (rcall);
7879 return fold_build2_loc (loc, COMPLEX_EXPR, type,
7880 fold_build2_loc (loc, MULT_EXPR, rtype,
7881 rcall,
7882 fold_build1_loc (loc, REALPART_EXPR,
7883 rtype, icall)),
7884 fold_build2_loc (loc, MULT_EXPR, rtype,
7885 rcall,
7886 fold_build1_loc (loc, IMAGPART_EXPR,
7887 rtype, icall)));
7890 return NULL_TREE;
7893 /* Fold function call to builtin trunc, truncf or truncl with argument ARG.
7894 Return NULL_TREE if no simplification can be made. */
7896 static tree
7897 fold_builtin_trunc (location_t loc, tree fndecl, tree arg)
7899 if (!validate_arg (arg, REAL_TYPE))
7900 return NULL_TREE;
7902 /* Optimize trunc of constant value. */
7903 if (TREE_CODE (arg) == REAL_CST && !TREE_OVERFLOW (arg))
7905 REAL_VALUE_TYPE r, x;
7906 tree type = TREE_TYPE (TREE_TYPE (fndecl));
7908 x = TREE_REAL_CST (arg);
7909 real_trunc (&r, TYPE_MODE (type), &x);
7910 return build_real (type, r);
7913 return fold_trunc_transparent_mathfn (loc, fndecl, arg);
7916 /* Fold function call to builtin floor, floorf or floorl with argument ARG.
7917 Return NULL_TREE if no simplification can be made. */
7919 static tree
7920 fold_builtin_floor (location_t loc, tree fndecl, tree arg)
7922 if (!validate_arg (arg, REAL_TYPE))
7923 return NULL_TREE;
7925 /* Optimize floor of constant value. */
7926 if (TREE_CODE (arg) == REAL_CST && !TREE_OVERFLOW (arg))
7928 REAL_VALUE_TYPE x;
7930 x = TREE_REAL_CST (arg);
7931 if (! REAL_VALUE_ISNAN (x) || ! flag_errno_math)
7933 tree type = TREE_TYPE (TREE_TYPE (fndecl));
7934 REAL_VALUE_TYPE r;
7936 real_floor (&r, TYPE_MODE (type), &x);
7937 return build_real (type, r);
7941 /* Fold floor (x) where x is nonnegative to trunc (x). */
7942 if (tree_expr_nonnegative_p (arg))
7944 tree truncfn = mathfn_built_in (TREE_TYPE (arg), BUILT_IN_TRUNC);
7945 if (truncfn)
7946 return build_call_expr_loc (loc, truncfn, 1, arg);
7949 return fold_trunc_transparent_mathfn (loc, fndecl, arg);
7952 /* Fold function call to builtin ceil, ceilf or ceill with argument ARG.
7953 Return NULL_TREE if no simplification can be made. */
7955 static tree
7956 fold_builtin_ceil (location_t loc, tree fndecl, tree arg)
7958 if (!validate_arg (arg, REAL_TYPE))
7959 return NULL_TREE;
7961 /* Optimize ceil of constant value. */
7962 if (TREE_CODE (arg) == REAL_CST && !TREE_OVERFLOW (arg))
7964 REAL_VALUE_TYPE x;
7966 x = TREE_REAL_CST (arg);
7967 if (! REAL_VALUE_ISNAN (x) || ! flag_errno_math)
7969 tree type = TREE_TYPE (TREE_TYPE (fndecl));
7970 REAL_VALUE_TYPE r;
7972 real_ceil (&r, TYPE_MODE (type), &x);
7973 return build_real (type, r);
7977 return fold_trunc_transparent_mathfn (loc, fndecl, arg);
7980 /* Fold function call to builtin round, roundf or roundl with argument ARG.
7981 Return NULL_TREE if no simplification can be made. */
7983 static tree
7984 fold_builtin_round (location_t loc, tree fndecl, tree arg)
7986 if (!validate_arg (arg, REAL_TYPE))
7987 return NULL_TREE;
7989 /* Optimize round of constant value. */
7990 if (TREE_CODE (arg) == REAL_CST && !TREE_OVERFLOW (arg))
7992 REAL_VALUE_TYPE x;
7994 x = TREE_REAL_CST (arg);
7995 if (! REAL_VALUE_ISNAN (x) || ! flag_errno_math)
7997 tree type = TREE_TYPE (TREE_TYPE (fndecl));
7998 REAL_VALUE_TYPE r;
8000 real_round (&r, TYPE_MODE (type), &x);
8001 return build_real (type, r);
8005 return fold_trunc_transparent_mathfn (loc, fndecl, arg);
8008 /* Fold function call to builtin lround, lroundf or lroundl (or the
8009 corresponding long long versions) and other rounding functions. ARG
8010 is the argument to the call. Return NULL_TREE if no simplification
8011 can be made. */
8013 static tree
8014 fold_builtin_int_roundingfn (location_t loc, tree fndecl, tree arg)
8016 if (!validate_arg (arg, REAL_TYPE))
8017 return NULL_TREE;
8019 /* Optimize lround of constant value. */
8020 if (TREE_CODE (arg) == REAL_CST && !TREE_OVERFLOW (arg))
8022 const REAL_VALUE_TYPE x = TREE_REAL_CST (arg);
8024 if (real_isfinite (&x))
8026 tree itype = TREE_TYPE (TREE_TYPE (fndecl));
8027 tree ftype = TREE_TYPE (arg);
8028 double_int val;
8029 REAL_VALUE_TYPE r;
8031 switch (DECL_FUNCTION_CODE (fndecl))
8033 CASE_FLT_FN (BUILT_IN_IFLOOR):
8034 CASE_FLT_FN (BUILT_IN_LFLOOR):
8035 CASE_FLT_FN (BUILT_IN_LLFLOOR):
8036 real_floor (&r, TYPE_MODE (ftype), &x);
8037 break;
8039 CASE_FLT_FN (BUILT_IN_ICEIL):
8040 CASE_FLT_FN (BUILT_IN_LCEIL):
8041 CASE_FLT_FN (BUILT_IN_LLCEIL):
8042 real_ceil (&r, TYPE_MODE (ftype), &x);
8043 break;
8045 CASE_FLT_FN (BUILT_IN_IROUND):
8046 CASE_FLT_FN (BUILT_IN_LROUND):
8047 CASE_FLT_FN (BUILT_IN_LLROUND):
8048 real_round (&r, TYPE_MODE (ftype), &x);
8049 break;
8051 default:
8052 gcc_unreachable ();
8055 real_to_integer2 ((HOST_WIDE_INT *)&val.low, &val.high, &r);
8056 if (double_int_fits_to_tree_p (itype, val))
8057 return double_int_to_tree (itype, val);
8061 switch (DECL_FUNCTION_CODE (fndecl))
8063 CASE_FLT_FN (BUILT_IN_LFLOOR):
8064 CASE_FLT_FN (BUILT_IN_LLFLOOR):
8065 /* Fold lfloor (x) where x is nonnegative to FIX_TRUNC (x). */
8066 if (tree_expr_nonnegative_p (arg))
8067 return fold_build1_loc (loc, FIX_TRUNC_EXPR,
8068 TREE_TYPE (TREE_TYPE (fndecl)), arg);
8069 break;
8070 default:;
8073 return fold_fixed_mathfn (loc, fndecl, arg);
8076 /* Fold function call to builtin ffs, clz, ctz, popcount and parity
8077 and their long and long long variants (i.e. ffsl and ffsll). ARG is
8078 the argument to the call. Return NULL_TREE if no simplification can
8079 be made. */
8081 static tree
8082 fold_builtin_bitop (tree fndecl, tree arg)
8084 if (!validate_arg (arg, INTEGER_TYPE))
8085 return NULL_TREE;
8087 /* Optimize for constant argument. */
8088 if (TREE_CODE (arg) == INTEGER_CST && !TREE_OVERFLOW (arg))
8090 HOST_WIDE_INT hi, width, result;
8091 unsigned HOST_WIDE_INT lo;
8092 tree type;
8094 type = TREE_TYPE (arg);
8095 width = TYPE_PRECISION (type);
8096 lo = TREE_INT_CST_LOW (arg);
8098 /* Clear all the bits that are beyond the type's precision. */
8099 if (width > HOST_BITS_PER_WIDE_INT)
8101 hi = TREE_INT_CST_HIGH (arg);
8102 if (width < HOST_BITS_PER_DOUBLE_INT)
8103 hi &= ~((unsigned HOST_WIDE_INT) (-1)
8104 << (width - HOST_BITS_PER_WIDE_INT));
8106 else
8108 hi = 0;
8109 if (width < HOST_BITS_PER_WIDE_INT)
8110 lo &= ~((unsigned HOST_WIDE_INT) (-1) << width);
8113 switch (DECL_FUNCTION_CODE (fndecl))
8115 CASE_INT_FN (BUILT_IN_FFS):
8116 if (lo != 0)
8117 result = ffs_hwi (lo);
8118 else if (hi != 0)
8119 result = HOST_BITS_PER_WIDE_INT + ffs_hwi (hi);
8120 else
8121 result = 0;
8122 break;
8124 CASE_INT_FN (BUILT_IN_CLZ):
8125 if (hi != 0)
8126 result = width - floor_log2 (hi) - 1 - HOST_BITS_PER_WIDE_INT;
8127 else if (lo != 0)
8128 result = width - floor_log2 (lo) - 1;
8129 else if (! CLZ_DEFINED_VALUE_AT_ZERO (TYPE_MODE (type), result))
8130 result = width;
8131 break;
8133 CASE_INT_FN (BUILT_IN_CTZ):
8134 if (lo != 0)
8135 result = ctz_hwi (lo);
8136 else if (hi != 0)
8137 result = HOST_BITS_PER_WIDE_INT + ctz_hwi (hi);
8138 else if (! CTZ_DEFINED_VALUE_AT_ZERO (TYPE_MODE (type), result))
8139 result = width;
8140 break;
8142 CASE_INT_FN (BUILT_IN_CLRSB):
8143 if (width > HOST_BITS_PER_WIDE_INT
8144 && (hi & ((unsigned HOST_WIDE_INT) 1
8145 << (width - HOST_BITS_PER_WIDE_INT - 1))) != 0)
8147 hi = ~hi & ~((unsigned HOST_WIDE_INT) (-1)
8148 << (width - HOST_BITS_PER_WIDE_INT - 1));
8149 lo = ~lo;
8151 else if (width <= HOST_BITS_PER_WIDE_INT
8152 && (lo & ((unsigned HOST_WIDE_INT) 1 << (width - 1))) != 0)
8153 lo = ~lo & ~((unsigned HOST_WIDE_INT) (-1) << (width - 1));
8154 if (hi != 0)
8155 result = width - floor_log2 (hi) - 2 - HOST_BITS_PER_WIDE_INT;
8156 else if (lo != 0)
8157 result = width - floor_log2 (lo) - 2;
8158 else
8159 result = width - 1;
8160 break;
8162 CASE_INT_FN (BUILT_IN_POPCOUNT):
8163 result = 0;
8164 while (lo)
8165 result++, lo &= lo - 1;
8166 while (hi)
8167 result++, hi &= (unsigned HOST_WIDE_INT) hi - 1;
8168 break;
8170 CASE_INT_FN (BUILT_IN_PARITY):
8171 result = 0;
8172 while (lo)
8173 result++, lo &= lo - 1;
8174 while (hi)
8175 result++, hi &= (unsigned HOST_WIDE_INT) hi - 1;
8176 result &= 1;
8177 break;
8179 default:
8180 gcc_unreachable ();
8183 return build_int_cst (TREE_TYPE (TREE_TYPE (fndecl)), result);
8186 return NULL_TREE;
8189 /* Fold function call to builtin_bswap and the short, long and long long
8190 variants. Return NULL_TREE if no simplification can be made. */
8191 static tree
8192 fold_builtin_bswap (tree fndecl, tree arg)
8194 if (! validate_arg (arg, INTEGER_TYPE))
8195 return NULL_TREE;
8197 /* Optimize constant value. */
8198 if (TREE_CODE (arg) == INTEGER_CST && !TREE_OVERFLOW (arg))
8200 HOST_WIDE_INT hi, width, r_hi = 0;
8201 unsigned HOST_WIDE_INT lo, r_lo = 0;
8202 tree type = TREE_TYPE (TREE_TYPE (fndecl));
8204 width = TYPE_PRECISION (type);
8205 lo = TREE_INT_CST_LOW (arg);
8206 hi = TREE_INT_CST_HIGH (arg);
8208 switch (DECL_FUNCTION_CODE (fndecl))
8210 case BUILT_IN_BSWAP16:
8211 case BUILT_IN_BSWAP32:
8212 case BUILT_IN_BSWAP64:
8214 int s;
8216 for (s = 0; s < width; s += 8)
8218 int d = width - s - 8;
8219 unsigned HOST_WIDE_INT byte;
8221 if (s < HOST_BITS_PER_WIDE_INT)
8222 byte = (lo >> s) & 0xff;
8223 else
8224 byte = (hi >> (s - HOST_BITS_PER_WIDE_INT)) & 0xff;
8226 if (d < HOST_BITS_PER_WIDE_INT)
8227 r_lo |= byte << d;
8228 else
8229 r_hi |= byte << (d - HOST_BITS_PER_WIDE_INT);
8233 break;
8235 default:
8236 gcc_unreachable ();
8239 if (width < HOST_BITS_PER_WIDE_INT)
8240 return build_int_cst (type, r_lo);
8241 else
8242 return build_int_cst_wide (type, r_lo, r_hi);
8245 return NULL_TREE;
8248 /* A subroutine of fold_builtin to fold the various logarithmic
8249 functions. Return NULL_TREE if no simplification can me made.
8250 FUNC is the corresponding MPFR logarithm function. */
8252 static tree
8253 fold_builtin_logarithm (location_t loc, tree fndecl, tree arg,
8254 int (*func)(mpfr_ptr, mpfr_srcptr, mp_rnd_t))
8256 if (validate_arg (arg, REAL_TYPE))
8258 tree type = TREE_TYPE (TREE_TYPE (fndecl));
8259 tree res;
8260 const enum built_in_function fcode = builtin_mathfn_code (arg);
8262 /* Calculate the result when the argument is a constant. */
8263 if ((res = do_mpfr_arg1 (arg, type, func, &dconst0, NULL, false)))
8264 return res;
8266 /* Special case, optimize logN(expN(x)) = x. */
8267 if (flag_unsafe_math_optimizations
8268 && ((func == mpfr_log
8269 && (fcode == BUILT_IN_EXP
8270 || fcode == BUILT_IN_EXPF
8271 || fcode == BUILT_IN_EXPL))
8272 || (func == mpfr_log2
8273 && (fcode == BUILT_IN_EXP2
8274 || fcode == BUILT_IN_EXP2F
8275 || fcode == BUILT_IN_EXP2L))
8276 || (func == mpfr_log10 && (BUILTIN_EXP10_P (fcode)))))
8277 return fold_convert_loc (loc, type, CALL_EXPR_ARG (arg, 0));
8279 /* Optimize logN(func()) for various exponential functions. We
8280 want to determine the value "x" and the power "exponent" in
8281 order to transform logN(x**exponent) into exponent*logN(x). */
8282 if (flag_unsafe_math_optimizations)
8284 tree exponent = 0, x = 0;
8286 switch (fcode)
8288 CASE_FLT_FN (BUILT_IN_EXP):
8289 /* Prepare to do logN(exp(exponent) -> exponent*logN(e). */
8290 x = build_real (type, real_value_truncate (TYPE_MODE (type),
8291 dconst_e ()));
8292 exponent = CALL_EXPR_ARG (arg, 0);
8293 break;
8294 CASE_FLT_FN (BUILT_IN_EXP2):
8295 /* Prepare to do logN(exp2(exponent) -> exponent*logN(2). */
8296 x = build_real (type, dconst2);
8297 exponent = CALL_EXPR_ARG (arg, 0);
8298 break;
8299 CASE_FLT_FN (BUILT_IN_EXP10):
8300 CASE_FLT_FN (BUILT_IN_POW10):
8301 /* Prepare to do logN(exp10(exponent) -> exponent*logN(10). */
8303 REAL_VALUE_TYPE dconst10;
8304 real_from_integer (&dconst10, VOIDmode, 10, 0, 0);
8305 x = build_real (type, dconst10);
8307 exponent = CALL_EXPR_ARG (arg, 0);
8308 break;
8309 CASE_FLT_FN (BUILT_IN_SQRT):
8310 /* Prepare to do logN(sqrt(x) -> 0.5*logN(x). */
8311 x = CALL_EXPR_ARG (arg, 0);
8312 exponent = build_real (type, dconsthalf);
8313 break;
8314 CASE_FLT_FN (BUILT_IN_CBRT):
8315 /* Prepare to do logN(cbrt(x) -> (1/3)*logN(x). */
8316 x = CALL_EXPR_ARG (arg, 0);
8317 exponent = build_real (type, real_value_truncate (TYPE_MODE (type),
8318 dconst_third ()));
8319 break;
8320 CASE_FLT_FN (BUILT_IN_POW):
8321 /* Prepare to do logN(pow(x,exponent) -> exponent*logN(x). */
8322 x = CALL_EXPR_ARG (arg, 0);
8323 exponent = CALL_EXPR_ARG (arg, 1);
8324 break;
8325 default:
8326 break;
8329 /* Now perform the optimization. */
8330 if (x && exponent)
8332 tree logfn = build_call_expr_loc (loc, fndecl, 1, x);
8333 return fold_build2_loc (loc, MULT_EXPR, type, exponent, logfn);
8338 return NULL_TREE;
8341 /* Fold a builtin function call to hypot, hypotf, or hypotl. Return
8342 NULL_TREE if no simplification can be made. */
8344 static tree
8345 fold_builtin_hypot (location_t loc, tree fndecl,
8346 tree arg0, tree arg1, tree type)
8348 tree res, narg0, narg1;
8350 if (!validate_arg (arg0, REAL_TYPE)
8351 || !validate_arg (arg1, REAL_TYPE))
8352 return NULL_TREE;
8354 /* Calculate the result when the argument is a constant. */
8355 if ((res = do_mpfr_arg2 (arg0, arg1, type, mpfr_hypot)))
8356 return res;
8358 /* If either argument to hypot has a negate or abs, strip that off.
8359 E.g. hypot(-x,fabs(y)) -> hypot(x,y). */
8360 narg0 = fold_strip_sign_ops (arg0);
8361 narg1 = fold_strip_sign_ops (arg1);
8362 if (narg0 || narg1)
8364 return build_call_expr_loc (loc, fndecl, 2, narg0 ? narg0 : arg0,
8365 narg1 ? narg1 : arg1);
8368 /* If either argument is zero, hypot is fabs of the other. */
8369 if (real_zerop (arg0))
8370 return fold_build1_loc (loc, ABS_EXPR, type, arg1);
8371 else if (real_zerop (arg1))
8372 return fold_build1_loc (loc, ABS_EXPR, type, arg0);
8374 /* hypot(x,x) -> fabs(x)*sqrt(2). */
8375 if (flag_unsafe_math_optimizations
8376 && operand_equal_p (arg0, arg1, OEP_PURE_SAME))
8378 const REAL_VALUE_TYPE sqrt2_trunc
8379 = real_value_truncate (TYPE_MODE (type), dconst_sqrt2 ());
8380 return fold_build2_loc (loc, MULT_EXPR, type,
8381 fold_build1_loc (loc, ABS_EXPR, type, arg0),
8382 build_real (type, sqrt2_trunc));
8385 return NULL_TREE;
8389 /* Fold a builtin function call to pow, powf, or powl. Return
8390 NULL_TREE if no simplification can be made. */
8391 static tree
8392 fold_builtin_pow (location_t loc, tree fndecl, tree arg0, tree arg1, tree type)
8394 tree res;
8396 if (!validate_arg (arg0, REAL_TYPE)
8397 || !validate_arg (arg1, REAL_TYPE))
8398 return NULL_TREE;
8400 /* Calculate the result when the argument is a constant. */
8401 if ((res = do_mpfr_arg2 (arg0, arg1, type, mpfr_pow)))
8402 return res;
8404 /* Optimize pow(1.0,y) = 1.0. */
8405 if (real_onep (arg0))
8406 return omit_one_operand_loc (loc, type, build_real (type, dconst1), arg1);
8408 if (TREE_CODE (arg1) == REAL_CST
8409 && !TREE_OVERFLOW (arg1))
8411 REAL_VALUE_TYPE cint;
8412 REAL_VALUE_TYPE c;
8413 HOST_WIDE_INT n;
8415 c = TREE_REAL_CST (arg1);
8417 /* Optimize pow(x,0.0) = 1.0. */
8418 if (REAL_VALUES_EQUAL (c, dconst0))
8419 return omit_one_operand_loc (loc, type, build_real (type, dconst1),
8420 arg0);
8422 /* Optimize pow(x,1.0) = x. */
8423 if (REAL_VALUES_EQUAL (c, dconst1))
8424 return arg0;
8426 /* Optimize pow(x,-1.0) = 1.0/x. */
8427 if (REAL_VALUES_EQUAL (c, dconstm1))
8428 return fold_build2_loc (loc, RDIV_EXPR, type,
8429 build_real (type, dconst1), arg0);
8431 /* Optimize pow(x,0.5) = sqrt(x). */
8432 if (flag_unsafe_math_optimizations
8433 && REAL_VALUES_EQUAL (c, dconsthalf))
8435 tree sqrtfn = mathfn_built_in (type, BUILT_IN_SQRT);
8437 if (sqrtfn != NULL_TREE)
8438 return build_call_expr_loc (loc, sqrtfn, 1, arg0);
8441 /* Optimize pow(x,1.0/3.0) = cbrt(x). */
8442 if (flag_unsafe_math_optimizations)
8444 const REAL_VALUE_TYPE dconstroot
8445 = real_value_truncate (TYPE_MODE (type), dconst_third ());
8447 if (REAL_VALUES_EQUAL (c, dconstroot))
8449 tree cbrtfn = mathfn_built_in (type, BUILT_IN_CBRT);
8450 if (cbrtfn != NULL_TREE)
8451 return build_call_expr_loc (loc, cbrtfn, 1, arg0);
8455 /* Check for an integer exponent. */
8456 n = real_to_integer (&c);
8457 real_from_integer (&cint, VOIDmode, n, n < 0 ? -1 : 0, 0);
8458 if (real_identical (&c, &cint))
8460 /* Attempt to evaluate pow at compile-time, unless this should
8461 raise an exception. */
8462 if (TREE_CODE (arg0) == REAL_CST
8463 && !TREE_OVERFLOW (arg0)
8464 && (n > 0
8465 || (!flag_trapping_math && !flag_errno_math)
8466 || !REAL_VALUES_EQUAL (TREE_REAL_CST (arg0), dconst0)))
8468 REAL_VALUE_TYPE x;
8469 bool inexact;
8471 x = TREE_REAL_CST (arg0);
8472 inexact = real_powi (&x, TYPE_MODE (type), &x, n);
8473 if (flag_unsafe_math_optimizations || !inexact)
8474 return build_real (type, x);
8477 /* Strip sign ops from even integer powers. */
8478 if ((n & 1) == 0 && flag_unsafe_math_optimizations)
8480 tree narg0 = fold_strip_sign_ops (arg0);
8481 if (narg0)
8482 return build_call_expr_loc (loc, fndecl, 2, narg0, arg1);
8487 if (flag_unsafe_math_optimizations)
8489 const enum built_in_function fcode = builtin_mathfn_code (arg0);
8491 /* Optimize pow(expN(x),y) = expN(x*y). */
8492 if (BUILTIN_EXPONENT_P (fcode))
8494 tree expfn = TREE_OPERAND (CALL_EXPR_FN (arg0), 0);
8495 tree arg = CALL_EXPR_ARG (arg0, 0);
8496 arg = fold_build2_loc (loc, MULT_EXPR, type, arg, arg1);
8497 return build_call_expr_loc (loc, expfn, 1, arg);
8500 /* Optimize pow(sqrt(x),y) = pow(x,y*0.5). */
8501 if (BUILTIN_SQRT_P (fcode))
8503 tree narg0 = CALL_EXPR_ARG (arg0, 0);
8504 tree narg1 = fold_build2_loc (loc, MULT_EXPR, type, arg1,
8505 build_real (type, dconsthalf));
8506 return build_call_expr_loc (loc, fndecl, 2, narg0, narg1);
8509 /* Optimize pow(cbrt(x),y) = pow(x,y/3) iff x is nonnegative. */
8510 if (BUILTIN_CBRT_P (fcode))
8512 tree arg = CALL_EXPR_ARG (arg0, 0);
8513 if (tree_expr_nonnegative_p (arg))
8515 const REAL_VALUE_TYPE dconstroot
8516 = real_value_truncate (TYPE_MODE (type), dconst_third ());
8517 tree narg1 = fold_build2_loc (loc, MULT_EXPR, type, arg1,
8518 build_real (type, dconstroot));
8519 return build_call_expr_loc (loc, fndecl, 2, arg, narg1);
8523 /* Optimize pow(pow(x,y),z) = pow(x,y*z) iff x is nonnegative. */
8524 if (fcode == BUILT_IN_POW
8525 || fcode == BUILT_IN_POWF
8526 || fcode == BUILT_IN_POWL)
8528 tree arg00 = CALL_EXPR_ARG (arg0, 0);
8529 if (tree_expr_nonnegative_p (arg00))
8531 tree arg01 = CALL_EXPR_ARG (arg0, 1);
8532 tree narg1 = fold_build2_loc (loc, MULT_EXPR, type, arg01, arg1);
8533 return build_call_expr_loc (loc, fndecl, 2, arg00, narg1);
8538 return NULL_TREE;
8541 /* Fold a builtin function call to powi, powif, or powil with argument ARG.
8542 Return NULL_TREE if no simplification can be made. */
8543 static tree
8544 fold_builtin_powi (location_t loc, tree fndecl ATTRIBUTE_UNUSED,
8545 tree arg0, tree arg1, tree type)
8547 if (!validate_arg (arg0, REAL_TYPE)
8548 || !validate_arg (arg1, INTEGER_TYPE))
8549 return NULL_TREE;
8551 /* Optimize pow(1.0,y) = 1.0. */
8552 if (real_onep (arg0))
8553 return omit_one_operand_loc (loc, type, build_real (type, dconst1), arg1);
8555 if (host_integerp (arg1, 0))
8557 HOST_WIDE_INT c = TREE_INT_CST_LOW (arg1);
8559 /* Evaluate powi at compile-time. */
8560 if (TREE_CODE (arg0) == REAL_CST
8561 && !TREE_OVERFLOW (arg0))
8563 REAL_VALUE_TYPE x;
8564 x = TREE_REAL_CST (arg0);
8565 real_powi (&x, TYPE_MODE (type), &x, c);
8566 return build_real (type, x);
8569 /* Optimize pow(x,0) = 1.0. */
8570 if (c == 0)
8571 return omit_one_operand_loc (loc, type, build_real (type, dconst1),
8572 arg0);
8574 /* Optimize pow(x,1) = x. */
8575 if (c == 1)
8576 return arg0;
8578 /* Optimize pow(x,-1) = 1.0/x. */
8579 if (c == -1)
8580 return fold_build2_loc (loc, RDIV_EXPR, type,
8581 build_real (type, dconst1), arg0);
8584 return NULL_TREE;
8587 /* A subroutine of fold_builtin to fold the various exponent
8588 functions. Return NULL_TREE if no simplification can be made.
8589 FUNC is the corresponding MPFR exponent function. */
8591 static tree
8592 fold_builtin_exponent (location_t loc, tree fndecl, tree arg,
8593 int (*func)(mpfr_ptr, mpfr_srcptr, mp_rnd_t))
8595 if (validate_arg (arg, REAL_TYPE))
8597 tree type = TREE_TYPE (TREE_TYPE (fndecl));
8598 tree res;
8600 /* Calculate the result when the argument is a constant. */
8601 if ((res = do_mpfr_arg1 (arg, type, func, NULL, NULL, 0)))
8602 return res;
8604 /* Optimize expN(logN(x)) = x. */
8605 if (flag_unsafe_math_optimizations)
8607 const enum built_in_function fcode = builtin_mathfn_code (arg);
8609 if ((func == mpfr_exp
8610 && (fcode == BUILT_IN_LOG
8611 || fcode == BUILT_IN_LOGF
8612 || fcode == BUILT_IN_LOGL))
8613 || (func == mpfr_exp2
8614 && (fcode == BUILT_IN_LOG2
8615 || fcode == BUILT_IN_LOG2F
8616 || fcode == BUILT_IN_LOG2L))
8617 || (func == mpfr_exp10
8618 && (fcode == BUILT_IN_LOG10
8619 || fcode == BUILT_IN_LOG10F
8620 || fcode == BUILT_IN_LOG10L)))
8621 return fold_convert_loc (loc, type, CALL_EXPR_ARG (arg, 0));
8625 return NULL_TREE;
8628 /* Return true if VAR is a VAR_DECL or a component thereof. */
8630 static bool
8631 var_decl_component_p (tree var)
8633 tree inner = var;
8634 while (handled_component_p (inner))
8635 inner = TREE_OPERAND (inner, 0);
8636 return SSA_VAR_P (inner);
8639 /* Fold function call to builtin memset. Return
8640 NULL_TREE if no simplification can be made. */
8642 static tree
8643 fold_builtin_memset (location_t loc, tree dest, tree c, tree len,
8644 tree type, bool ignore)
8646 tree var, ret, etype;
8647 unsigned HOST_WIDE_INT length, cval;
8649 if (! validate_arg (dest, POINTER_TYPE)
8650 || ! validate_arg (c, INTEGER_TYPE)
8651 || ! validate_arg (len, INTEGER_TYPE))
8652 return NULL_TREE;
8654 if (! host_integerp (len, 1))
8655 return NULL_TREE;
8657 /* If the LEN parameter is zero, return DEST. */
8658 if (integer_zerop (len))
8659 return omit_one_operand_loc (loc, type, dest, c);
8661 if (TREE_CODE (c) != INTEGER_CST || TREE_SIDE_EFFECTS (dest))
8662 return NULL_TREE;
8664 var = dest;
8665 STRIP_NOPS (var);
8666 if (TREE_CODE (var) != ADDR_EXPR)
8667 return NULL_TREE;
8669 var = TREE_OPERAND (var, 0);
8670 if (TREE_THIS_VOLATILE (var))
8671 return NULL_TREE;
8673 etype = TREE_TYPE (var);
8674 if (TREE_CODE (etype) == ARRAY_TYPE)
8675 etype = TREE_TYPE (etype);
8677 if (!INTEGRAL_TYPE_P (etype)
8678 && !POINTER_TYPE_P (etype))
8679 return NULL_TREE;
8681 if (! var_decl_component_p (var))
8682 return NULL_TREE;
8684 length = tree_low_cst (len, 1);
8685 if (GET_MODE_SIZE (TYPE_MODE (etype)) != length
8686 || get_pointer_alignment (dest) / BITS_PER_UNIT < length)
8687 return NULL_TREE;
8689 if (length > HOST_BITS_PER_WIDE_INT / BITS_PER_UNIT)
8690 return NULL_TREE;
8692 if (integer_zerop (c))
8693 cval = 0;
8694 else
8696 if (CHAR_BIT != 8 || BITS_PER_UNIT != 8 || HOST_BITS_PER_WIDE_INT > 64)
8697 return NULL_TREE;
8699 cval = TREE_INT_CST_LOW (c);
8700 cval &= 0xff;
8701 cval |= cval << 8;
8702 cval |= cval << 16;
8703 cval |= (cval << 31) << 1;
8706 ret = build_int_cst_type (etype, cval);
8707 var = build_fold_indirect_ref_loc (loc,
8708 fold_convert_loc (loc,
8709 build_pointer_type (etype),
8710 dest));
8711 ret = build2 (MODIFY_EXPR, etype, var, ret);
8712 if (ignore)
8713 return ret;
8715 return omit_one_operand_loc (loc, type, dest, ret);
8718 /* Fold function call to builtin memset. Return
8719 NULL_TREE if no simplification can be made. */
8721 static tree
8722 fold_builtin_bzero (location_t loc, tree dest, tree size, bool ignore)
8724 if (! validate_arg (dest, POINTER_TYPE)
8725 || ! validate_arg (size, INTEGER_TYPE))
8726 return NULL_TREE;
8728 if (!ignore)
8729 return NULL_TREE;
8731 /* New argument list transforming bzero(ptr x, int y) to
8732 memset(ptr x, int 0, size_t y). This is done this way
8733 so that if it isn't expanded inline, we fallback to
8734 calling bzero instead of memset. */
8736 return fold_builtin_memset (loc, dest, integer_zero_node,
8737 fold_convert_loc (loc, size_type_node, size),
8738 void_type_node, ignore);
8741 /* Fold function call to builtin mem{{,p}cpy,move}. Return
8742 NULL_TREE if no simplification can be made.
8743 If ENDP is 0, return DEST (like memcpy).
8744 If ENDP is 1, return DEST+LEN (like mempcpy).
8745 If ENDP is 2, return DEST+LEN-1 (like stpcpy).
8746 If ENDP is 3, return DEST, additionally *SRC and *DEST may overlap
8747 (memmove). */
8749 static tree
8750 fold_builtin_memory_op (location_t loc, tree dest, tree src,
8751 tree len, tree type, bool ignore, int endp)
8753 tree destvar, srcvar, expr;
8755 if (! validate_arg (dest, POINTER_TYPE)
8756 || ! validate_arg (src, POINTER_TYPE)
8757 || ! validate_arg (len, INTEGER_TYPE))
8758 return NULL_TREE;
8760 /* If the LEN parameter is zero, return DEST. */
8761 if (integer_zerop (len))
8762 return omit_one_operand_loc (loc, type, dest, src);
8764 /* If SRC and DEST are the same (and not volatile), return
8765 DEST{,+LEN,+LEN-1}. */
8766 if (operand_equal_p (src, dest, 0))
8767 expr = len;
8768 else
8770 tree srctype, desttype;
8771 unsigned int src_align, dest_align;
8772 tree off0;
8774 if (endp == 3)
8776 src_align = get_pointer_alignment (src);
8777 dest_align = get_pointer_alignment (dest);
8779 /* Both DEST and SRC must be pointer types.
8780 ??? This is what old code did. Is the testing for pointer types
8781 really mandatory?
8783 If either SRC is readonly or length is 1, we can use memcpy. */
8784 if (!dest_align || !src_align)
8785 return NULL_TREE;
8786 if (readonly_data_expr (src)
8787 || (host_integerp (len, 1)
8788 && (MIN (src_align, dest_align) / BITS_PER_UNIT
8789 >= (unsigned HOST_WIDE_INT) tree_low_cst (len, 1))))
8791 tree fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
8792 if (!fn)
8793 return NULL_TREE;
8794 return build_call_expr_loc (loc, fn, 3, dest, src, len);
8797 /* If *src and *dest can't overlap, optimize into memcpy as well. */
8798 if (TREE_CODE (src) == ADDR_EXPR
8799 && TREE_CODE (dest) == ADDR_EXPR)
8801 tree src_base, dest_base, fn;
8802 HOST_WIDE_INT src_offset = 0, dest_offset = 0;
8803 HOST_WIDE_INT size = -1;
8804 HOST_WIDE_INT maxsize = -1;
8806 srcvar = TREE_OPERAND (src, 0);
8807 src_base = get_ref_base_and_extent (srcvar, &src_offset,
8808 &size, &maxsize);
8809 destvar = TREE_OPERAND (dest, 0);
8810 dest_base = get_ref_base_and_extent (destvar, &dest_offset,
8811 &size, &maxsize);
8812 if (host_integerp (len, 1))
8813 maxsize = tree_low_cst (len, 1);
8814 else
8815 maxsize = -1;
8816 src_offset /= BITS_PER_UNIT;
8817 dest_offset /= BITS_PER_UNIT;
8818 if (SSA_VAR_P (src_base)
8819 && SSA_VAR_P (dest_base))
8821 if (operand_equal_p (src_base, dest_base, 0)
8822 && ranges_overlap_p (src_offset, maxsize,
8823 dest_offset, maxsize))
8824 return NULL_TREE;
8826 else if (TREE_CODE (src_base) == MEM_REF
8827 && TREE_CODE (dest_base) == MEM_REF)
8829 double_int off;
8830 if (! operand_equal_p (TREE_OPERAND (src_base, 0),
8831 TREE_OPERAND (dest_base, 0), 0))
8832 return NULL_TREE;
8833 off = mem_ref_offset (src_base) +
8834 double_int::from_shwi (src_offset);
8835 if (!off.fits_shwi ())
8836 return NULL_TREE;
8837 src_offset = off.low;
8838 off = mem_ref_offset (dest_base) +
8839 double_int::from_shwi (dest_offset);
8840 if (!off.fits_shwi ())
8841 return NULL_TREE;
8842 dest_offset = off.low;
8843 if (ranges_overlap_p (src_offset, maxsize,
8844 dest_offset, maxsize))
8845 return NULL_TREE;
8847 else
8848 return NULL_TREE;
8850 fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
8851 if (!fn)
8852 return NULL_TREE;
8853 return build_call_expr_loc (loc, fn, 3, dest, src, len);
8856 /* If the destination and source do not alias optimize into
8857 memcpy as well. */
8858 if ((is_gimple_min_invariant (dest)
8859 || TREE_CODE (dest) == SSA_NAME)
8860 && (is_gimple_min_invariant (src)
8861 || TREE_CODE (src) == SSA_NAME))
8863 ao_ref destr, srcr;
8864 ao_ref_init_from_ptr_and_size (&destr, dest, len);
8865 ao_ref_init_from_ptr_and_size (&srcr, src, len);
8866 if (!refs_may_alias_p_1 (&destr, &srcr, false))
8868 tree fn;
8869 fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
8870 if (!fn)
8871 return NULL_TREE;
8872 return build_call_expr_loc (loc, fn, 3, dest, src, len);
8876 return NULL_TREE;
8879 if (!host_integerp (len, 0))
8880 return NULL_TREE;
8881 /* FIXME:
8882 This logic lose for arguments like (type *)malloc (sizeof (type)),
8883 since we strip the casts of up to VOID return value from malloc.
8884 Perhaps we ought to inherit type from non-VOID argument here? */
8885 STRIP_NOPS (src);
8886 STRIP_NOPS (dest);
8887 if (!POINTER_TYPE_P (TREE_TYPE (src))
8888 || !POINTER_TYPE_P (TREE_TYPE (dest)))
8889 return NULL_TREE;
8890 /* As we fold (void *)(p + CST) to (void *)p + CST undo this here. */
8891 if (TREE_CODE (src) == POINTER_PLUS_EXPR)
8893 tree tem = TREE_OPERAND (src, 0);
8894 STRIP_NOPS (tem);
8895 if (tem != TREE_OPERAND (src, 0))
8896 src = build1 (NOP_EXPR, TREE_TYPE (tem), src);
8898 if (TREE_CODE (dest) == POINTER_PLUS_EXPR)
8900 tree tem = TREE_OPERAND (dest, 0);
8901 STRIP_NOPS (tem);
8902 if (tem != TREE_OPERAND (dest, 0))
8903 dest = build1 (NOP_EXPR, TREE_TYPE (tem), dest);
8905 srctype = TREE_TYPE (TREE_TYPE (src));
8906 if (TREE_CODE (srctype) == ARRAY_TYPE
8907 && !tree_int_cst_equal (TYPE_SIZE_UNIT (srctype), len))
8909 srctype = TREE_TYPE (srctype);
8910 STRIP_NOPS (src);
8911 src = build1 (NOP_EXPR, build_pointer_type (srctype), src);
8913 desttype = TREE_TYPE (TREE_TYPE (dest));
8914 if (TREE_CODE (desttype) == ARRAY_TYPE
8915 && !tree_int_cst_equal (TYPE_SIZE_UNIT (desttype), len))
8917 desttype = TREE_TYPE (desttype);
8918 STRIP_NOPS (dest);
8919 dest = build1 (NOP_EXPR, build_pointer_type (desttype), dest);
8921 if (TREE_ADDRESSABLE (srctype)
8922 || TREE_ADDRESSABLE (desttype))
8923 return NULL_TREE;
8925 src_align = get_pointer_alignment (src);
8926 dest_align = get_pointer_alignment (dest);
8927 if (dest_align < TYPE_ALIGN (desttype)
8928 || src_align < TYPE_ALIGN (srctype))
8929 return NULL_TREE;
8931 if (!ignore)
8932 dest = builtin_save_expr (dest);
8934 /* Build accesses at offset zero with a ref-all character type. */
8935 off0 = build_int_cst (build_pointer_type_for_mode (char_type_node,
8936 ptr_mode, true), 0);
8938 destvar = dest;
8939 STRIP_NOPS (destvar);
8940 if (TREE_CODE (destvar) == ADDR_EXPR
8941 && var_decl_component_p (TREE_OPERAND (destvar, 0))
8942 && tree_int_cst_equal (TYPE_SIZE_UNIT (desttype), len))
8943 destvar = fold_build2 (MEM_REF, desttype, destvar, off0);
8944 else
8945 destvar = NULL_TREE;
8947 srcvar = src;
8948 STRIP_NOPS (srcvar);
8949 if (TREE_CODE (srcvar) == ADDR_EXPR
8950 && var_decl_component_p (TREE_OPERAND (srcvar, 0))
8951 && tree_int_cst_equal (TYPE_SIZE_UNIT (srctype), len))
8953 if (!destvar
8954 || src_align >= TYPE_ALIGN (desttype))
8955 srcvar = fold_build2 (MEM_REF, destvar ? desttype : srctype,
8956 srcvar, off0);
8957 else if (!STRICT_ALIGNMENT)
8959 srctype = build_aligned_type (TYPE_MAIN_VARIANT (desttype),
8960 src_align);
8961 srcvar = fold_build2 (MEM_REF, srctype, srcvar, off0);
8963 else
8964 srcvar = NULL_TREE;
8966 else
8967 srcvar = NULL_TREE;
8969 if (srcvar == NULL_TREE && destvar == NULL_TREE)
8970 return NULL_TREE;
8972 if (srcvar == NULL_TREE)
8974 STRIP_NOPS (src);
8975 if (src_align >= TYPE_ALIGN (desttype))
8976 srcvar = fold_build2 (MEM_REF, desttype, src, off0);
8977 else
8979 if (STRICT_ALIGNMENT)
8980 return NULL_TREE;
8981 srctype = build_aligned_type (TYPE_MAIN_VARIANT (desttype),
8982 src_align);
8983 srcvar = fold_build2 (MEM_REF, srctype, src, off0);
8986 else if (destvar == NULL_TREE)
8988 STRIP_NOPS (dest);
8989 if (dest_align >= TYPE_ALIGN (srctype))
8990 destvar = fold_build2 (MEM_REF, srctype, dest, off0);
8991 else
8993 if (STRICT_ALIGNMENT)
8994 return NULL_TREE;
8995 desttype = build_aligned_type (TYPE_MAIN_VARIANT (srctype),
8996 dest_align);
8997 destvar = fold_build2 (MEM_REF, desttype, dest, off0);
9001 expr = build2 (MODIFY_EXPR, TREE_TYPE (destvar), destvar, srcvar);
9004 if (ignore)
9005 return expr;
9007 if (endp == 0 || endp == 3)
9008 return omit_one_operand_loc (loc, type, dest, expr);
9010 if (expr == len)
9011 expr = NULL_TREE;
9013 if (endp == 2)
9014 len = fold_build2_loc (loc, MINUS_EXPR, TREE_TYPE (len), len,
9015 ssize_int (1));
9017 dest = fold_build_pointer_plus_loc (loc, dest, len);
9018 dest = fold_convert_loc (loc, type, dest);
9019 if (expr)
9020 dest = omit_one_operand_loc (loc, type, dest, expr);
9021 return dest;
9024 /* Fold function call to builtin strcpy with arguments DEST and SRC.
9025 If LEN is not NULL, it represents the length of the string to be
9026 copied. Return NULL_TREE if no simplification can be made. */
9028 tree
9029 fold_builtin_strcpy (location_t loc, tree fndecl, tree dest, tree src, tree len)
9031 tree fn;
9033 if (!validate_arg (dest, POINTER_TYPE)
9034 || !validate_arg (src, POINTER_TYPE))
9035 return NULL_TREE;
9037 /* If SRC and DEST are the same (and not volatile), return DEST. */
9038 if (operand_equal_p (src, dest, 0))
9039 return fold_convert_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)), dest);
9041 if (optimize_function_for_size_p (cfun))
9042 return NULL_TREE;
9044 fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
9045 if (!fn)
9046 return NULL_TREE;
9048 if (!len)
9050 len = c_strlen (src, 1);
9051 if (! len || TREE_SIDE_EFFECTS (len))
9052 return NULL_TREE;
9055 len = fold_convert_loc (loc, size_type_node, len);
9056 len = size_binop_loc (loc, PLUS_EXPR, len, build_int_cst (size_type_node, 1));
9057 return fold_convert_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)),
9058 build_call_expr_loc (loc, fn, 3, dest, src, len));
9061 /* Fold function call to builtin stpcpy with arguments DEST and SRC.
9062 Return NULL_TREE if no simplification can be made. */
9064 static tree
9065 fold_builtin_stpcpy (location_t loc, tree fndecl, tree dest, tree src)
9067 tree fn, len, lenp1, call, type;
9069 if (!validate_arg (dest, POINTER_TYPE)
9070 || !validate_arg (src, POINTER_TYPE))
9071 return NULL_TREE;
9073 len = c_strlen (src, 1);
9074 if (!len
9075 || TREE_CODE (len) != INTEGER_CST)
9076 return NULL_TREE;
9078 if (optimize_function_for_size_p (cfun)
9079 /* If length is zero it's small enough. */
9080 && !integer_zerop (len))
9081 return NULL_TREE;
9083 fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
9084 if (!fn)
9085 return NULL_TREE;
9087 lenp1 = size_binop_loc (loc, PLUS_EXPR,
9088 fold_convert_loc (loc, size_type_node, len),
9089 build_int_cst (size_type_node, 1));
9090 /* We use dest twice in building our expression. Save it from
9091 multiple expansions. */
9092 dest = builtin_save_expr (dest);
9093 call = build_call_expr_loc (loc, fn, 3, dest, src, lenp1);
9095 type = TREE_TYPE (TREE_TYPE (fndecl));
9096 dest = fold_build_pointer_plus_loc (loc, dest, len);
9097 dest = fold_convert_loc (loc, type, dest);
9098 dest = omit_one_operand_loc (loc, type, dest, call);
9099 return dest;
9102 /* Fold function call to builtin strncpy with arguments DEST, SRC, and LEN.
9103 If SLEN is not NULL, it represents the length of the source string.
9104 Return NULL_TREE if no simplification can be made. */
9106 tree
9107 fold_builtin_strncpy (location_t loc, tree fndecl, tree dest,
9108 tree src, tree len, tree slen)
9110 tree fn;
9112 if (!validate_arg (dest, POINTER_TYPE)
9113 || !validate_arg (src, POINTER_TYPE)
9114 || !validate_arg (len, INTEGER_TYPE))
9115 return NULL_TREE;
9117 /* If the LEN parameter is zero, return DEST. */
9118 if (integer_zerop (len))
9119 return omit_one_operand_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)), dest, src);
9121 /* We can't compare slen with len as constants below if len is not a
9122 constant. */
9123 if (len == 0 || TREE_CODE (len) != INTEGER_CST)
9124 return NULL_TREE;
9126 if (!slen)
9127 slen = c_strlen (src, 1);
9129 /* Now, we must be passed a constant src ptr parameter. */
9130 if (slen == 0 || TREE_CODE (slen) != INTEGER_CST)
9131 return NULL_TREE;
9133 slen = size_binop_loc (loc, PLUS_EXPR, slen, ssize_int (1));
9135 /* We do not support simplification of this case, though we do
9136 support it when expanding trees into RTL. */
9137 /* FIXME: generate a call to __builtin_memset. */
9138 if (tree_int_cst_lt (slen, len))
9139 return NULL_TREE;
9141 /* OK transform into builtin memcpy. */
9142 fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
9143 if (!fn)
9144 return NULL_TREE;
9146 len = fold_convert_loc (loc, size_type_node, len);
9147 return fold_convert_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)),
9148 build_call_expr_loc (loc, fn, 3, dest, src, len));
9151 /* Fold function call to builtin memchr. ARG1, ARG2 and LEN are the
9152 arguments to the call, and TYPE is its return type.
9153 Return NULL_TREE if no simplification can be made. */
9155 static tree
9156 fold_builtin_memchr (location_t loc, tree arg1, tree arg2, tree len, tree type)
9158 if (!validate_arg (arg1, POINTER_TYPE)
9159 || !validate_arg (arg2, INTEGER_TYPE)
9160 || !validate_arg (len, INTEGER_TYPE))
9161 return NULL_TREE;
9162 else
9164 const char *p1;
9166 if (TREE_CODE (arg2) != INTEGER_CST
9167 || !host_integerp (len, 1))
9168 return NULL_TREE;
9170 p1 = c_getstr (arg1);
9171 if (p1 && compare_tree_int (len, strlen (p1) + 1) <= 0)
9173 char c;
9174 const char *r;
9175 tree tem;
9177 if (target_char_cast (arg2, &c))
9178 return NULL_TREE;
9180 r = (const char *) memchr (p1, c, tree_low_cst (len, 1));
9182 if (r == NULL)
9183 return build_int_cst (TREE_TYPE (arg1), 0);
9185 tem = fold_build_pointer_plus_hwi_loc (loc, arg1, r - p1);
9186 return fold_convert_loc (loc, type, tem);
9188 return NULL_TREE;
9192 /* Fold function call to builtin memcmp with arguments ARG1 and ARG2.
9193 Return NULL_TREE if no simplification can be made. */
9195 static tree
9196 fold_builtin_memcmp (location_t loc, tree arg1, tree arg2, tree len)
9198 const char *p1, *p2;
9200 if (!validate_arg (arg1, POINTER_TYPE)
9201 || !validate_arg (arg2, POINTER_TYPE)
9202 || !validate_arg (len, INTEGER_TYPE))
9203 return NULL_TREE;
9205 /* If the LEN parameter is zero, return zero. */
9206 if (integer_zerop (len))
9207 return omit_two_operands_loc (loc, integer_type_node, integer_zero_node,
9208 arg1, arg2);
9210 /* If ARG1 and ARG2 are the same (and not volatile), return zero. */
9211 if (operand_equal_p (arg1, arg2, 0))
9212 return omit_one_operand_loc (loc, integer_type_node, integer_zero_node, len);
9214 p1 = c_getstr (arg1);
9215 p2 = c_getstr (arg2);
9217 /* If all arguments are constant, and the value of len is not greater
9218 than the lengths of arg1 and arg2, evaluate at compile-time. */
9219 if (host_integerp (len, 1) && p1 && p2
9220 && compare_tree_int (len, strlen (p1) + 1) <= 0
9221 && compare_tree_int (len, strlen (p2) + 1) <= 0)
9223 const int r = memcmp (p1, p2, tree_low_cst (len, 1));
9225 if (r > 0)
9226 return integer_one_node;
9227 else if (r < 0)
9228 return integer_minus_one_node;
9229 else
9230 return integer_zero_node;
9233 /* If len parameter is one, return an expression corresponding to
9234 (*(const unsigned char*)arg1 - (const unsigned char*)arg2). */
9235 if (host_integerp (len, 1) && tree_low_cst (len, 1) == 1)
9237 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
9238 tree cst_uchar_ptr_node
9239 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
9241 tree ind1
9242 = fold_convert_loc (loc, integer_type_node,
9243 build1 (INDIRECT_REF, cst_uchar_node,
9244 fold_convert_loc (loc,
9245 cst_uchar_ptr_node,
9246 arg1)));
9247 tree ind2
9248 = fold_convert_loc (loc, integer_type_node,
9249 build1 (INDIRECT_REF, cst_uchar_node,
9250 fold_convert_loc (loc,
9251 cst_uchar_ptr_node,
9252 arg2)));
9253 return fold_build2_loc (loc, MINUS_EXPR, integer_type_node, ind1, ind2);
9256 return NULL_TREE;
9259 /* Fold function call to builtin strcmp with arguments ARG1 and ARG2.
9260 Return NULL_TREE if no simplification can be made. */
9262 static tree
9263 fold_builtin_strcmp (location_t loc, tree arg1, tree arg2)
9265 const char *p1, *p2;
9267 if (!validate_arg (arg1, POINTER_TYPE)
9268 || !validate_arg (arg2, POINTER_TYPE))
9269 return NULL_TREE;
9271 /* If ARG1 and ARG2 are the same (and not volatile), return zero. */
9272 if (operand_equal_p (arg1, arg2, 0))
9273 return integer_zero_node;
9275 p1 = c_getstr (arg1);
9276 p2 = c_getstr (arg2);
9278 if (p1 && p2)
9280 const int i = strcmp (p1, p2);
9281 if (i < 0)
9282 return integer_minus_one_node;
9283 else if (i > 0)
9284 return integer_one_node;
9285 else
9286 return integer_zero_node;
9289 /* If the second arg is "", return *(const unsigned char*)arg1. */
9290 if (p2 && *p2 == '\0')
9292 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
9293 tree cst_uchar_ptr_node
9294 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
9296 return fold_convert_loc (loc, integer_type_node,
9297 build1 (INDIRECT_REF, cst_uchar_node,
9298 fold_convert_loc (loc,
9299 cst_uchar_ptr_node,
9300 arg1)));
9303 /* If the first arg is "", return -*(const unsigned char*)arg2. */
9304 if (p1 && *p1 == '\0')
9306 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
9307 tree cst_uchar_ptr_node
9308 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
9310 tree temp
9311 = fold_convert_loc (loc, integer_type_node,
9312 build1 (INDIRECT_REF, cst_uchar_node,
9313 fold_convert_loc (loc,
9314 cst_uchar_ptr_node,
9315 arg2)));
9316 return fold_build1_loc (loc, NEGATE_EXPR, integer_type_node, temp);
9319 return NULL_TREE;
9322 /* Fold function call to builtin strncmp with arguments ARG1, ARG2, and LEN.
9323 Return NULL_TREE if no simplification can be made. */
9325 static tree
9326 fold_builtin_strncmp (location_t loc, tree arg1, tree arg2, tree len)
9328 const char *p1, *p2;
9330 if (!validate_arg (arg1, POINTER_TYPE)
9331 || !validate_arg (arg2, POINTER_TYPE)
9332 || !validate_arg (len, INTEGER_TYPE))
9333 return NULL_TREE;
9335 /* If the LEN parameter is zero, return zero. */
9336 if (integer_zerop (len))
9337 return omit_two_operands_loc (loc, integer_type_node, integer_zero_node,
9338 arg1, arg2);
9340 /* If ARG1 and ARG2 are the same (and not volatile), return zero. */
9341 if (operand_equal_p (arg1, arg2, 0))
9342 return omit_one_operand_loc (loc, integer_type_node, integer_zero_node, len);
9344 p1 = c_getstr (arg1);
9345 p2 = c_getstr (arg2);
9347 if (host_integerp (len, 1) && p1 && p2)
9349 const int i = strncmp (p1, p2, tree_low_cst (len, 1));
9350 if (i > 0)
9351 return integer_one_node;
9352 else if (i < 0)
9353 return integer_minus_one_node;
9354 else
9355 return integer_zero_node;
9358 /* If the second arg is "", and the length is greater than zero,
9359 return *(const unsigned char*)arg1. */
9360 if (p2 && *p2 == '\0'
9361 && TREE_CODE (len) == INTEGER_CST
9362 && tree_int_cst_sgn (len) == 1)
9364 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
9365 tree cst_uchar_ptr_node
9366 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
9368 return fold_convert_loc (loc, integer_type_node,
9369 build1 (INDIRECT_REF, cst_uchar_node,
9370 fold_convert_loc (loc,
9371 cst_uchar_ptr_node,
9372 arg1)));
9375 /* If the first arg is "", and the length is greater than zero,
9376 return -*(const unsigned char*)arg2. */
9377 if (p1 && *p1 == '\0'
9378 && TREE_CODE (len) == INTEGER_CST
9379 && tree_int_cst_sgn (len) == 1)
9381 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
9382 tree cst_uchar_ptr_node
9383 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
9385 tree temp = fold_convert_loc (loc, integer_type_node,
9386 build1 (INDIRECT_REF, cst_uchar_node,
9387 fold_convert_loc (loc,
9388 cst_uchar_ptr_node,
9389 arg2)));
9390 return fold_build1_loc (loc, NEGATE_EXPR, integer_type_node, temp);
9393 /* If len parameter is one, return an expression corresponding to
9394 (*(const unsigned char*)arg1 - (const unsigned char*)arg2). */
9395 if (host_integerp (len, 1) && tree_low_cst (len, 1) == 1)
9397 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
9398 tree cst_uchar_ptr_node
9399 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
9401 tree ind1 = fold_convert_loc (loc, integer_type_node,
9402 build1 (INDIRECT_REF, cst_uchar_node,
9403 fold_convert_loc (loc,
9404 cst_uchar_ptr_node,
9405 arg1)));
9406 tree ind2 = fold_convert_loc (loc, integer_type_node,
9407 build1 (INDIRECT_REF, cst_uchar_node,
9408 fold_convert_loc (loc,
9409 cst_uchar_ptr_node,
9410 arg2)));
9411 return fold_build2_loc (loc, MINUS_EXPR, integer_type_node, ind1, ind2);
9414 return NULL_TREE;
9417 /* Fold function call to builtin signbit, signbitf or signbitl with argument
9418 ARG. Return NULL_TREE if no simplification can be made. */
9420 static tree
9421 fold_builtin_signbit (location_t loc, tree arg, tree type)
9423 if (!validate_arg (arg, REAL_TYPE))
9424 return NULL_TREE;
9426 /* If ARG is a compile-time constant, determine the result. */
9427 if (TREE_CODE (arg) == REAL_CST
9428 && !TREE_OVERFLOW (arg))
9430 REAL_VALUE_TYPE c;
9432 c = TREE_REAL_CST (arg);
9433 return (REAL_VALUE_NEGATIVE (c)
9434 ? build_one_cst (type)
9435 : build_zero_cst (type));
9438 /* If ARG is non-negative, the result is always zero. */
9439 if (tree_expr_nonnegative_p (arg))
9440 return omit_one_operand_loc (loc, type, integer_zero_node, arg);
9442 /* If ARG's format doesn't have signed zeros, return "arg < 0.0". */
9443 if (!HONOR_SIGNED_ZEROS (TYPE_MODE (TREE_TYPE (arg))))
9444 return fold_convert (type,
9445 fold_build2_loc (loc, LT_EXPR, boolean_type_node, arg,
9446 build_real (TREE_TYPE (arg), dconst0)));
9448 return NULL_TREE;
9451 /* Fold function call to builtin copysign, copysignf or copysignl with
9452 arguments ARG1 and ARG2. Return NULL_TREE if no simplification can
9453 be made. */
9455 static tree
9456 fold_builtin_copysign (location_t loc, tree fndecl,
9457 tree arg1, tree arg2, tree type)
9459 tree tem;
9461 if (!validate_arg (arg1, REAL_TYPE)
9462 || !validate_arg (arg2, REAL_TYPE))
9463 return NULL_TREE;
9465 /* copysign(X,X) is X. */
9466 if (operand_equal_p (arg1, arg2, 0))
9467 return fold_convert_loc (loc, type, arg1);
9469 /* If ARG1 and ARG2 are compile-time constants, determine the result. */
9470 if (TREE_CODE (arg1) == REAL_CST
9471 && TREE_CODE (arg2) == REAL_CST
9472 && !TREE_OVERFLOW (arg1)
9473 && !TREE_OVERFLOW (arg2))
9475 REAL_VALUE_TYPE c1, c2;
9477 c1 = TREE_REAL_CST (arg1);
9478 c2 = TREE_REAL_CST (arg2);
9479 /* c1.sign := c2.sign. */
9480 real_copysign (&c1, &c2);
9481 return build_real (type, c1);
9484 /* copysign(X, Y) is fabs(X) when Y is always non-negative.
9485 Remember to evaluate Y for side-effects. */
9486 if (tree_expr_nonnegative_p (arg2))
9487 return omit_one_operand_loc (loc, type,
9488 fold_build1_loc (loc, ABS_EXPR, type, arg1),
9489 arg2);
9491 /* Strip sign changing operations for the first argument. */
9492 tem = fold_strip_sign_ops (arg1);
9493 if (tem)
9494 return build_call_expr_loc (loc, fndecl, 2, tem, arg2);
9496 return NULL_TREE;
9499 /* Fold a call to builtin isascii with argument ARG. */
9501 static tree
9502 fold_builtin_isascii (location_t loc, tree arg)
9504 if (!validate_arg (arg, INTEGER_TYPE))
9505 return NULL_TREE;
9506 else
9508 /* Transform isascii(c) -> ((c & ~0x7f) == 0). */
9509 arg = fold_build2 (BIT_AND_EXPR, integer_type_node, arg,
9510 build_int_cst (integer_type_node,
9511 ~ (unsigned HOST_WIDE_INT) 0x7f));
9512 return fold_build2_loc (loc, EQ_EXPR, integer_type_node,
9513 arg, integer_zero_node);
9517 /* Fold a call to builtin toascii with argument ARG. */
9519 static tree
9520 fold_builtin_toascii (location_t loc, tree arg)
9522 if (!validate_arg (arg, INTEGER_TYPE))
9523 return NULL_TREE;
9525 /* Transform toascii(c) -> (c & 0x7f). */
9526 return fold_build2_loc (loc, BIT_AND_EXPR, integer_type_node, arg,
9527 build_int_cst (integer_type_node, 0x7f));
9530 /* Fold a call to builtin isdigit with argument ARG. */
9532 static tree
9533 fold_builtin_isdigit (location_t loc, tree arg)
9535 if (!validate_arg (arg, INTEGER_TYPE))
9536 return NULL_TREE;
9537 else
9539 /* Transform isdigit(c) -> (unsigned)(c) - '0' <= 9. */
9540 /* According to the C standard, isdigit is unaffected by locale.
9541 However, it definitely is affected by the target character set. */
9542 unsigned HOST_WIDE_INT target_digit0
9543 = lang_hooks.to_target_charset ('0');
9545 if (target_digit0 == 0)
9546 return NULL_TREE;
9548 arg = fold_convert_loc (loc, unsigned_type_node, arg);
9549 arg = fold_build2 (MINUS_EXPR, unsigned_type_node, arg,
9550 build_int_cst (unsigned_type_node, target_digit0));
9551 return fold_build2_loc (loc, LE_EXPR, integer_type_node, arg,
9552 build_int_cst (unsigned_type_node, 9));
9556 /* Fold a call to fabs, fabsf or fabsl with argument ARG. */
9558 static tree
9559 fold_builtin_fabs (location_t loc, tree arg, tree type)
9561 if (!validate_arg (arg, REAL_TYPE))
9562 return NULL_TREE;
9564 arg = fold_convert_loc (loc, type, arg);
9565 if (TREE_CODE (arg) == REAL_CST)
9566 return fold_abs_const (arg, type);
9567 return fold_build1_loc (loc, ABS_EXPR, type, arg);
9570 /* Fold a call to abs, labs, llabs or imaxabs with argument ARG. */
9572 static tree
9573 fold_builtin_abs (location_t loc, tree arg, tree type)
9575 if (!validate_arg (arg, INTEGER_TYPE))
9576 return NULL_TREE;
9578 arg = fold_convert_loc (loc, type, arg);
9579 if (TREE_CODE (arg) == INTEGER_CST)
9580 return fold_abs_const (arg, type);
9581 return fold_build1_loc (loc, ABS_EXPR, type, arg);
9584 /* Fold a fma operation with arguments ARG[012]. */
9586 tree
9587 fold_fma (location_t loc ATTRIBUTE_UNUSED,
9588 tree type, tree arg0, tree arg1, tree arg2)
9590 if (TREE_CODE (arg0) == REAL_CST
9591 && TREE_CODE (arg1) == REAL_CST
9592 && TREE_CODE (arg2) == REAL_CST)
9593 return do_mpfr_arg3 (arg0, arg1, arg2, type, mpfr_fma);
9595 return NULL_TREE;
9598 /* Fold a call to fma, fmaf, or fmal with arguments ARG[012]. */
9600 static tree
9601 fold_builtin_fma (location_t loc, tree arg0, tree arg1, tree arg2, tree type)
9603 if (validate_arg (arg0, REAL_TYPE)
9604 && validate_arg(arg1, REAL_TYPE)
9605 && validate_arg(arg2, REAL_TYPE))
9607 tree tem = fold_fma (loc, type, arg0, arg1, arg2);
9608 if (tem)
9609 return tem;
9611 /* ??? Only expand to FMA_EXPR if it's directly supported. */
9612 if (optab_handler (fma_optab, TYPE_MODE (type)) != CODE_FOR_nothing)
9613 return fold_build3_loc (loc, FMA_EXPR, type, arg0, arg1, arg2);
9615 return NULL_TREE;
9618 /* Fold a call to builtin fmin or fmax. */
9620 static tree
9621 fold_builtin_fmin_fmax (location_t loc, tree arg0, tree arg1,
9622 tree type, bool max)
9624 if (validate_arg (arg0, REAL_TYPE) && validate_arg (arg1, REAL_TYPE))
9626 /* Calculate the result when the argument is a constant. */
9627 tree res = do_mpfr_arg2 (arg0, arg1, type, (max ? mpfr_max : mpfr_min));
9629 if (res)
9630 return res;
9632 /* If either argument is NaN, return the other one. Avoid the
9633 transformation if we get (and honor) a signalling NaN. Using
9634 omit_one_operand() ensures we create a non-lvalue. */
9635 if (TREE_CODE (arg0) == REAL_CST
9636 && real_isnan (&TREE_REAL_CST (arg0))
9637 && (! HONOR_SNANS (TYPE_MODE (TREE_TYPE (arg0)))
9638 || ! TREE_REAL_CST (arg0).signalling))
9639 return omit_one_operand_loc (loc, type, arg1, arg0);
9640 if (TREE_CODE (arg1) == REAL_CST
9641 && real_isnan (&TREE_REAL_CST (arg1))
9642 && (! HONOR_SNANS (TYPE_MODE (TREE_TYPE (arg1)))
9643 || ! TREE_REAL_CST (arg1).signalling))
9644 return omit_one_operand_loc (loc, type, arg0, arg1);
9646 /* Transform fmin/fmax(x,x) -> x. */
9647 if (operand_equal_p (arg0, arg1, OEP_PURE_SAME))
9648 return omit_one_operand_loc (loc, type, arg0, arg1);
9650 /* Convert fmin/fmax to MIN_EXPR/MAX_EXPR. C99 requires these
9651 functions to return the numeric arg if the other one is NaN.
9652 These tree codes don't honor that, so only transform if
9653 -ffinite-math-only is set. C99 doesn't require -0.0 to be
9654 handled, so we don't have to worry about it either. */
9655 if (flag_finite_math_only)
9656 return fold_build2_loc (loc, (max ? MAX_EXPR : MIN_EXPR), type,
9657 fold_convert_loc (loc, type, arg0),
9658 fold_convert_loc (loc, type, arg1));
9660 return NULL_TREE;
9663 /* Fold a call to builtin carg(a+bi) -> atan2(b,a). */
9665 static tree
9666 fold_builtin_carg (location_t loc, tree arg, tree type)
9668 if (validate_arg (arg, COMPLEX_TYPE)
9669 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg))) == REAL_TYPE)
9671 tree atan2_fn = mathfn_built_in (type, BUILT_IN_ATAN2);
9673 if (atan2_fn)
9675 tree new_arg = builtin_save_expr (arg);
9676 tree r_arg = fold_build1_loc (loc, REALPART_EXPR, type, new_arg);
9677 tree i_arg = fold_build1_loc (loc, IMAGPART_EXPR, type, new_arg);
9678 return build_call_expr_loc (loc, atan2_fn, 2, i_arg, r_arg);
9682 return NULL_TREE;
9685 /* Fold a call to builtin logb/ilogb. */
9687 static tree
9688 fold_builtin_logb (location_t loc, tree arg, tree rettype)
9690 if (! validate_arg (arg, REAL_TYPE))
9691 return NULL_TREE;
9693 STRIP_NOPS (arg);
9695 if (TREE_CODE (arg) == REAL_CST && ! TREE_OVERFLOW (arg))
9697 const REAL_VALUE_TYPE *const value = TREE_REAL_CST_PTR (arg);
9699 switch (value->cl)
9701 case rvc_nan:
9702 case rvc_inf:
9703 /* If arg is Inf or NaN and we're logb, return it. */
9704 if (TREE_CODE (rettype) == REAL_TYPE)
9706 /* For logb(-Inf) we have to return +Inf. */
9707 if (real_isinf (value) && real_isneg (value))
9709 REAL_VALUE_TYPE tem;
9710 real_inf (&tem);
9711 return build_real (rettype, tem);
9713 return fold_convert_loc (loc, rettype, arg);
9715 /* Fall through... */
9716 case rvc_zero:
9717 /* Zero may set errno and/or raise an exception for logb, also
9718 for ilogb we don't know FP_ILOGB0. */
9719 return NULL_TREE;
9720 case rvc_normal:
9721 /* For normal numbers, proceed iff radix == 2. In GCC,
9722 normalized significands are in the range [0.5, 1.0). We
9723 want the exponent as if they were [1.0, 2.0) so get the
9724 exponent and subtract 1. */
9725 if (REAL_MODE_FORMAT (TYPE_MODE (TREE_TYPE (arg)))->b == 2)
9726 return fold_convert_loc (loc, rettype,
9727 build_int_cst (integer_type_node,
9728 REAL_EXP (value)-1));
9729 break;
9733 return NULL_TREE;
9736 /* Fold a call to builtin significand, if radix == 2. */
9738 static tree
9739 fold_builtin_significand (location_t loc, tree arg, tree rettype)
9741 if (! validate_arg (arg, REAL_TYPE))
9742 return NULL_TREE;
9744 STRIP_NOPS (arg);
9746 if (TREE_CODE (arg) == REAL_CST && ! TREE_OVERFLOW (arg))
9748 const REAL_VALUE_TYPE *const value = TREE_REAL_CST_PTR (arg);
9750 switch (value->cl)
9752 case rvc_zero:
9753 case rvc_nan:
9754 case rvc_inf:
9755 /* If arg is +-0, +-Inf or +-NaN, then return it. */
9756 return fold_convert_loc (loc, rettype, arg);
9757 case rvc_normal:
9758 /* For normal numbers, proceed iff radix == 2. */
9759 if (REAL_MODE_FORMAT (TYPE_MODE (TREE_TYPE (arg)))->b == 2)
9761 REAL_VALUE_TYPE result = *value;
9762 /* In GCC, normalized significands are in the range [0.5,
9763 1.0). We want them to be [1.0, 2.0) so set the
9764 exponent to 1. */
9765 SET_REAL_EXP (&result, 1);
9766 return build_real (rettype, result);
9768 break;
9772 return NULL_TREE;
9775 /* Fold a call to builtin frexp, we can assume the base is 2. */
9777 static tree
9778 fold_builtin_frexp (location_t loc, tree arg0, tree arg1, tree rettype)
9780 if (! validate_arg (arg0, REAL_TYPE) || ! validate_arg (arg1, POINTER_TYPE))
9781 return NULL_TREE;
9783 STRIP_NOPS (arg0);
9785 if (!(TREE_CODE (arg0) == REAL_CST && ! TREE_OVERFLOW (arg0)))
9786 return NULL_TREE;
9788 arg1 = build_fold_indirect_ref_loc (loc, arg1);
9790 /* Proceed if a valid pointer type was passed in. */
9791 if (TYPE_MAIN_VARIANT (TREE_TYPE (arg1)) == integer_type_node)
9793 const REAL_VALUE_TYPE *const value = TREE_REAL_CST_PTR (arg0);
9794 tree frac, exp;
9796 switch (value->cl)
9798 case rvc_zero:
9799 /* For +-0, return (*exp = 0, +-0). */
9800 exp = integer_zero_node;
9801 frac = arg0;
9802 break;
9803 case rvc_nan:
9804 case rvc_inf:
9805 /* For +-NaN or +-Inf, *exp is unspecified, return arg0. */
9806 return omit_one_operand_loc (loc, rettype, arg0, arg1);
9807 case rvc_normal:
9809 /* Since the frexp function always expects base 2, and in
9810 GCC normalized significands are already in the range
9811 [0.5, 1.0), we have exactly what frexp wants. */
9812 REAL_VALUE_TYPE frac_rvt = *value;
9813 SET_REAL_EXP (&frac_rvt, 0);
9814 frac = build_real (rettype, frac_rvt);
9815 exp = build_int_cst (integer_type_node, REAL_EXP (value));
9817 break;
9818 default:
9819 gcc_unreachable ();
9822 /* Create the COMPOUND_EXPR (*arg1 = trunc, frac). */
9823 arg1 = fold_build2_loc (loc, MODIFY_EXPR, rettype, arg1, exp);
9824 TREE_SIDE_EFFECTS (arg1) = 1;
9825 return fold_build2_loc (loc, COMPOUND_EXPR, rettype, arg1, frac);
9828 return NULL_TREE;
9831 /* Fold a call to builtin ldexp or scalbn/scalbln. If LDEXP is true
9832 then we can assume the base is two. If it's false, then we have to
9833 check the mode of the TYPE parameter in certain cases. */
9835 static tree
9836 fold_builtin_load_exponent (location_t loc, tree arg0, tree arg1,
9837 tree type, bool ldexp)
9839 if (validate_arg (arg0, REAL_TYPE) && validate_arg (arg1, INTEGER_TYPE))
9841 STRIP_NOPS (arg0);
9842 STRIP_NOPS (arg1);
9844 /* If arg0 is 0, Inf or NaN, or if arg1 is 0, then return arg0. */
9845 if (real_zerop (arg0) || integer_zerop (arg1)
9846 || (TREE_CODE (arg0) == REAL_CST
9847 && !real_isfinite (&TREE_REAL_CST (arg0))))
9848 return omit_one_operand_loc (loc, type, arg0, arg1);
9850 /* If both arguments are constant, then try to evaluate it. */
9851 if ((ldexp || REAL_MODE_FORMAT (TYPE_MODE (type))->b == 2)
9852 && TREE_CODE (arg0) == REAL_CST && !TREE_OVERFLOW (arg0)
9853 && host_integerp (arg1, 0))
9855 /* Bound the maximum adjustment to twice the range of the
9856 mode's valid exponents. Use abs to ensure the range is
9857 positive as a sanity check. */
9858 const long max_exp_adj = 2 *
9859 labs (REAL_MODE_FORMAT (TYPE_MODE (type))->emax
9860 - REAL_MODE_FORMAT (TYPE_MODE (type))->emin);
9862 /* Get the user-requested adjustment. */
9863 const HOST_WIDE_INT req_exp_adj = tree_low_cst (arg1, 0);
9865 /* The requested adjustment must be inside this range. This
9866 is a preliminary cap to avoid things like overflow, we
9867 may still fail to compute the result for other reasons. */
9868 if (-max_exp_adj < req_exp_adj && req_exp_adj < max_exp_adj)
9870 REAL_VALUE_TYPE initial_result;
9872 real_ldexp (&initial_result, &TREE_REAL_CST (arg0), req_exp_adj);
9874 /* Ensure we didn't overflow. */
9875 if (! real_isinf (&initial_result))
9877 const REAL_VALUE_TYPE trunc_result
9878 = real_value_truncate (TYPE_MODE (type), initial_result);
9880 /* Only proceed if the target mode can hold the
9881 resulting value. */
9882 if (REAL_VALUES_EQUAL (initial_result, trunc_result))
9883 return build_real (type, trunc_result);
9889 return NULL_TREE;
9892 /* Fold a call to builtin modf. */
9894 static tree
9895 fold_builtin_modf (location_t loc, tree arg0, tree arg1, tree rettype)
9897 if (! validate_arg (arg0, REAL_TYPE) || ! validate_arg (arg1, POINTER_TYPE))
9898 return NULL_TREE;
9900 STRIP_NOPS (arg0);
9902 if (!(TREE_CODE (arg0) == REAL_CST && ! TREE_OVERFLOW (arg0)))
9903 return NULL_TREE;
9905 arg1 = build_fold_indirect_ref_loc (loc, arg1);
9907 /* Proceed if a valid pointer type was passed in. */
9908 if (TYPE_MAIN_VARIANT (TREE_TYPE (arg1)) == TYPE_MAIN_VARIANT (rettype))
9910 const REAL_VALUE_TYPE *const value = TREE_REAL_CST_PTR (arg0);
9911 REAL_VALUE_TYPE trunc, frac;
9913 switch (value->cl)
9915 case rvc_nan:
9916 case rvc_zero:
9917 /* For +-NaN or +-0, return (*arg1 = arg0, arg0). */
9918 trunc = frac = *value;
9919 break;
9920 case rvc_inf:
9921 /* For +-Inf, return (*arg1 = arg0, +-0). */
9922 frac = dconst0;
9923 frac.sign = value->sign;
9924 trunc = *value;
9925 break;
9926 case rvc_normal:
9927 /* Return (*arg1 = trunc(arg0), arg0-trunc(arg0)). */
9928 real_trunc (&trunc, VOIDmode, value);
9929 real_arithmetic (&frac, MINUS_EXPR, value, &trunc);
9930 /* If the original number was negative and already
9931 integral, then the fractional part is -0.0. */
9932 if (value->sign && frac.cl == rvc_zero)
9933 frac.sign = value->sign;
9934 break;
9937 /* Create the COMPOUND_EXPR (*arg1 = trunc, frac). */
9938 arg1 = fold_build2_loc (loc, MODIFY_EXPR, rettype, arg1,
9939 build_real (rettype, trunc));
9940 TREE_SIDE_EFFECTS (arg1) = 1;
9941 return fold_build2_loc (loc, COMPOUND_EXPR, rettype, arg1,
9942 build_real (rettype, frac));
9945 return NULL_TREE;
9948 /* Given a location LOC, an interclass builtin function decl FNDECL
9949 and its single argument ARG, return an folded expression computing
9950 the same, or NULL_TREE if we either couldn't or didn't want to fold
9951 (the latter happen if there's an RTL instruction available). */
9953 static tree
9954 fold_builtin_interclass_mathfn (location_t loc, tree fndecl, tree arg)
9956 enum machine_mode mode;
9958 if (!validate_arg (arg, REAL_TYPE))
9959 return NULL_TREE;
9961 if (interclass_mathfn_icode (arg, fndecl) != CODE_FOR_nothing)
9962 return NULL_TREE;
9964 mode = TYPE_MODE (TREE_TYPE (arg));
9966 /* If there is no optab, try generic code. */
9967 switch (DECL_FUNCTION_CODE (fndecl))
9969 tree result;
9971 CASE_FLT_FN (BUILT_IN_ISINF):
9973 /* isinf(x) -> isgreater(fabs(x),DBL_MAX). */
9974 tree const isgr_fn = builtin_decl_explicit (BUILT_IN_ISGREATER);
9975 tree const type = TREE_TYPE (arg);
9976 REAL_VALUE_TYPE r;
9977 char buf[128];
9979 get_max_float (REAL_MODE_FORMAT (mode), buf, sizeof (buf));
9980 real_from_string (&r, buf);
9981 result = build_call_expr (isgr_fn, 2,
9982 fold_build1_loc (loc, ABS_EXPR, type, arg),
9983 build_real (type, r));
9984 return result;
9986 CASE_FLT_FN (BUILT_IN_FINITE):
9987 case BUILT_IN_ISFINITE:
9989 /* isfinite(x) -> islessequal(fabs(x),DBL_MAX). */
9990 tree const isle_fn = builtin_decl_explicit (BUILT_IN_ISLESSEQUAL);
9991 tree const type = TREE_TYPE (arg);
9992 REAL_VALUE_TYPE r;
9993 char buf[128];
9995 get_max_float (REAL_MODE_FORMAT (mode), buf, sizeof (buf));
9996 real_from_string (&r, buf);
9997 result = build_call_expr (isle_fn, 2,
9998 fold_build1_loc (loc, ABS_EXPR, type, arg),
9999 build_real (type, r));
10000 /*result = fold_build2_loc (loc, UNGT_EXPR,
10001 TREE_TYPE (TREE_TYPE (fndecl)),
10002 fold_build1_loc (loc, ABS_EXPR, type, arg),
10003 build_real (type, r));
10004 result = fold_build1_loc (loc, TRUTH_NOT_EXPR,
10005 TREE_TYPE (TREE_TYPE (fndecl)),
10006 result);*/
10007 return result;
10009 case BUILT_IN_ISNORMAL:
10011 /* isnormal(x) -> isgreaterequal(fabs(x),DBL_MIN) &
10012 islessequal(fabs(x),DBL_MAX). */
10013 tree const isle_fn = builtin_decl_explicit (BUILT_IN_ISLESSEQUAL);
10014 tree const isge_fn = builtin_decl_explicit (BUILT_IN_ISGREATEREQUAL);
10015 tree const type = TREE_TYPE (arg);
10016 REAL_VALUE_TYPE rmax, rmin;
10017 char buf[128];
10019 get_max_float (REAL_MODE_FORMAT (mode), buf, sizeof (buf));
10020 real_from_string (&rmax, buf);
10021 sprintf (buf, "0x1p%d", REAL_MODE_FORMAT (mode)->emin - 1);
10022 real_from_string (&rmin, buf);
10023 arg = builtin_save_expr (fold_build1_loc (loc, ABS_EXPR, type, arg));
10024 result = build_call_expr (isle_fn, 2, arg,
10025 build_real (type, rmax));
10026 result = fold_build2 (BIT_AND_EXPR, integer_type_node, result,
10027 build_call_expr (isge_fn, 2, arg,
10028 build_real (type, rmin)));
10029 return result;
10031 default:
10032 break;
10035 return NULL_TREE;
10038 /* Fold a call to __builtin_isnan(), __builtin_isinf, __builtin_finite.
10039 ARG is the argument for the call. */
10041 static tree
10042 fold_builtin_classify (location_t loc, tree fndecl, tree arg, int builtin_index)
10044 tree type = TREE_TYPE (TREE_TYPE (fndecl));
10045 REAL_VALUE_TYPE r;
10047 if (!validate_arg (arg, REAL_TYPE))
10048 return NULL_TREE;
10050 switch (builtin_index)
10052 case BUILT_IN_ISINF:
10053 if (!HONOR_INFINITIES (TYPE_MODE (TREE_TYPE (arg))))
10054 return omit_one_operand_loc (loc, type, integer_zero_node, arg);
10056 if (TREE_CODE (arg) == REAL_CST)
10058 r = TREE_REAL_CST (arg);
10059 if (real_isinf (&r))
10060 return real_compare (GT_EXPR, &r, &dconst0)
10061 ? integer_one_node : integer_minus_one_node;
10062 else
10063 return integer_zero_node;
10066 return NULL_TREE;
10068 case BUILT_IN_ISINF_SIGN:
10070 /* isinf_sign(x) -> isinf(x) ? (signbit(x) ? -1 : 1) : 0 */
10071 /* In a boolean context, GCC will fold the inner COND_EXPR to
10072 1. So e.g. "if (isinf_sign(x))" would be folded to just
10073 "if (isinf(x) ? 1 : 0)" which becomes "if (isinf(x))". */
10074 tree signbit_fn = mathfn_built_in_1 (TREE_TYPE (arg), BUILT_IN_SIGNBIT, 0);
10075 tree isinf_fn = builtin_decl_explicit (BUILT_IN_ISINF);
10076 tree tmp = NULL_TREE;
10078 arg = builtin_save_expr (arg);
10080 if (signbit_fn && isinf_fn)
10082 tree signbit_call = build_call_expr_loc (loc, signbit_fn, 1, arg);
10083 tree isinf_call = build_call_expr_loc (loc, isinf_fn, 1, arg);
10085 signbit_call = fold_build2_loc (loc, NE_EXPR, integer_type_node,
10086 signbit_call, integer_zero_node);
10087 isinf_call = fold_build2_loc (loc, NE_EXPR, integer_type_node,
10088 isinf_call, integer_zero_node);
10090 tmp = fold_build3_loc (loc, COND_EXPR, integer_type_node, signbit_call,
10091 integer_minus_one_node, integer_one_node);
10092 tmp = fold_build3_loc (loc, COND_EXPR, integer_type_node,
10093 isinf_call, tmp,
10094 integer_zero_node);
10097 return tmp;
10100 case BUILT_IN_ISFINITE:
10101 if (!HONOR_NANS (TYPE_MODE (TREE_TYPE (arg)))
10102 && !HONOR_INFINITIES (TYPE_MODE (TREE_TYPE (arg))))
10103 return omit_one_operand_loc (loc, type, integer_one_node, arg);
10105 if (TREE_CODE (arg) == REAL_CST)
10107 r = TREE_REAL_CST (arg);
10108 return real_isfinite (&r) ? integer_one_node : integer_zero_node;
10111 return NULL_TREE;
10113 case BUILT_IN_ISNAN:
10114 if (!HONOR_NANS (TYPE_MODE (TREE_TYPE (arg))))
10115 return omit_one_operand_loc (loc, type, integer_zero_node, arg);
10117 if (TREE_CODE (arg) == REAL_CST)
10119 r = TREE_REAL_CST (arg);
10120 return real_isnan (&r) ? integer_one_node : integer_zero_node;
10123 arg = builtin_save_expr (arg);
10124 return fold_build2_loc (loc, UNORDERED_EXPR, type, arg, arg);
10126 default:
10127 gcc_unreachable ();
10131 /* Fold a call to __builtin_fpclassify(int, int, int, int, int, ...).
10132 This builtin will generate code to return the appropriate floating
10133 point classification depending on the value of the floating point
10134 number passed in. The possible return values must be supplied as
10135 int arguments to the call in the following order: FP_NAN, FP_INFINITE,
10136 FP_NORMAL, FP_SUBNORMAL and FP_ZERO. The ellipses is for exactly
10137 one floating point argument which is "type generic". */
10139 static tree
10140 fold_builtin_fpclassify (location_t loc, tree exp)
10142 tree fp_nan, fp_infinite, fp_normal, fp_subnormal, fp_zero,
10143 arg, type, res, tmp;
10144 enum machine_mode mode;
10145 REAL_VALUE_TYPE r;
10146 char buf[128];
10148 /* Verify the required arguments in the original call. */
10149 if (!validate_arglist (exp, INTEGER_TYPE, INTEGER_TYPE,
10150 INTEGER_TYPE, INTEGER_TYPE,
10151 INTEGER_TYPE, REAL_TYPE, VOID_TYPE))
10152 return NULL_TREE;
10154 fp_nan = CALL_EXPR_ARG (exp, 0);
10155 fp_infinite = CALL_EXPR_ARG (exp, 1);
10156 fp_normal = CALL_EXPR_ARG (exp, 2);
10157 fp_subnormal = CALL_EXPR_ARG (exp, 3);
10158 fp_zero = CALL_EXPR_ARG (exp, 4);
10159 arg = CALL_EXPR_ARG (exp, 5);
10160 type = TREE_TYPE (arg);
10161 mode = TYPE_MODE (type);
10162 arg = builtin_save_expr (fold_build1_loc (loc, ABS_EXPR, type, arg));
10164 /* fpclassify(x) ->
10165 isnan(x) ? FP_NAN :
10166 (fabs(x) == Inf ? FP_INFINITE :
10167 (fabs(x) >= DBL_MIN ? FP_NORMAL :
10168 (x == 0 ? FP_ZERO : FP_SUBNORMAL))). */
10170 tmp = fold_build2_loc (loc, EQ_EXPR, integer_type_node, arg,
10171 build_real (type, dconst0));
10172 res = fold_build3_loc (loc, COND_EXPR, integer_type_node,
10173 tmp, fp_zero, fp_subnormal);
10175 sprintf (buf, "0x1p%d", REAL_MODE_FORMAT (mode)->emin - 1);
10176 real_from_string (&r, buf);
10177 tmp = fold_build2_loc (loc, GE_EXPR, integer_type_node,
10178 arg, build_real (type, r));
10179 res = fold_build3_loc (loc, COND_EXPR, integer_type_node, tmp, fp_normal, res);
10181 if (HONOR_INFINITIES (mode))
10183 real_inf (&r);
10184 tmp = fold_build2_loc (loc, EQ_EXPR, integer_type_node, arg,
10185 build_real (type, r));
10186 res = fold_build3_loc (loc, COND_EXPR, integer_type_node, tmp,
10187 fp_infinite, res);
10190 if (HONOR_NANS (mode))
10192 tmp = fold_build2_loc (loc, ORDERED_EXPR, integer_type_node, arg, arg);
10193 res = fold_build3_loc (loc, COND_EXPR, integer_type_node, tmp, res, fp_nan);
10196 return res;
10199 /* Fold a call to an unordered comparison function such as
10200 __builtin_isgreater(). FNDECL is the FUNCTION_DECL for the function
10201 being called and ARG0 and ARG1 are the arguments for the call.
10202 UNORDERED_CODE and ORDERED_CODE are comparison codes that give
10203 the opposite of the desired result. UNORDERED_CODE is used
10204 for modes that can hold NaNs and ORDERED_CODE is used for
10205 the rest. */
10207 static tree
10208 fold_builtin_unordered_cmp (location_t loc, tree fndecl, tree arg0, tree arg1,
10209 enum tree_code unordered_code,
10210 enum tree_code ordered_code)
10212 tree type = TREE_TYPE (TREE_TYPE (fndecl));
10213 enum tree_code code;
10214 tree type0, type1;
10215 enum tree_code code0, code1;
10216 tree cmp_type = NULL_TREE;
10218 type0 = TREE_TYPE (arg0);
10219 type1 = TREE_TYPE (arg1);
10221 code0 = TREE_CODE (type0);
10222 code1 = TREE_CODE (type1);
10224 if (code0 == REAL_TYPE && code1 == REAL_TYPE)
10225 /* Choose the wider of two real types. */
10226 cmp_type = TYPE_PRECISION (type0) >= TYPE_PRECISION (type1)
10227 ? type0 : type1;
10228 else if (code0 == REAL_TYPE && code1 == INTEGER_TYPE)
10229 cmp_type = type0;
10230 else if (code0 == INTEGER_TYPE && code1 == REAL_TYPE)
10231 cmp_type = type1;
10233 arg0 = fold_convert_loc (loc, cmp_type, arg0);
10234 arg1 = fold_convert_loc (loc, cmp_type, arg1);
10236 if (unordered_code == UNORDERED_EXPR)
10238 if (!HONOR_NANS (TYPE_MODE (TREE_TYPE (arg0))))
10239 return omit_two_operands_loc (loc, type, integer_zero_node, arg0, arg1);
10240 return fold_build2_loc (loc, UNORDERED_EXPR, type, arg0, arg1);
10243 code = HONOR_NANS (TYPE_MODE (TREE_TYPE (arg0))) ? unordered_code
10244 : ordered_code;
10245 return fold_build1_loc (loc, TRUTH_NOT_EXPR, type,
10246 fold_build2_loc (loc, code, type, arg0, arg1));
10249 /* Fold a call to built-in function FNDECL with 0 arguments.
10250 IGNORE is true if the result of the function call is ignored. This
10251 function returns NULL_TREE if no simplification was possible. */
10253 static tree
10254 fold_builtin_0 (location_t loc, tree fndecl, bool ignore ATTRIBUTE_UNUSED)
10256 tree type = TREE_TYPE (TREE_TYPE (fndecl));
10257 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
10258 switch (fcode)
10260 CASE_FLT_FN (BUILT_IN_INF):
10261 case BUILT_IN_INFD32:
10262 case BUILT_IN_INFD64:
10263 case BUILT_IN_INFD128:
10264 return fold_builtin_inf (loc, type, true);
10266 CASE_FLT_FN (BUILT_IN_HUGE_VAL):
10267 return fold_builtin_inf (loc, type, false);
10269 case BUILT_IN_CLASSIFY_TYPE:
10270 return fold_builtin_classify_type (NULL_TREE);
10272 default:
10273 break;
10275 return NULL_TREE;
10278 /* Fold a call to built-in function FNDECL with 1 argument, ARG0.
10279 IGNORE is true if the result of the function call is ignored. This
10280 function returns NULL_TREE if no simplification was possible. */
10282 static tree
10283 fold_builtin_1 (location_t loc, tree fndecl, tree arg0, bool ignore)
10285 tree type = TREE_TYPE (TREE_TYPE (fndecl));
10286 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
10287 switch (fcode)
10289 case BUILT_IN_CONSTANT_P:
10291 tree val = fold_builtin_constant_p (arg0);
10293 /* Gimplification will pull the CALL_EXPR for the builtin out of
10294 an if condition. When not optimizing, we'll not CSE it back.
10295 To avoid link error types of regressions, return false now. */
10296 if (!val && !optimize)
10297 val = integer_zero_node;
10299 return val;
10302 case BUILT_IN_CLASSIFY_TYPE:
10303 return fold_builtin_classify_type (arg0);
10305 case BUILT_IN_STRLEN:
10306 return fold_builtin_strlen (loc, type, arg0);
10308 CASE_FLT_FN (BUILT_IN_FABS):
10309 return fold_builtin_fabs (loc, arg0, type);
10311 case BUILT_IN_ABS:
10312 case BUILT_IN_LABS:
10313 case BUILT_IN_LLABS:
10314 case BUILT_IN_IMAXABS:
10315 return fold_builtin_abs (loc, arg0, type);
10317 CASE_FLT_FN (BUILT_IN_CONJ):
10318 if (validate_arg (arg0, COMPLEX_TYPE)
10319 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10320 return fold_build1_loc (loc, CONJ_EXPR, type, arg0);
10321 break;
10323 CASE_FLT_FN (BUILT_IN_CREAL):
10324 if (validate_arg (arg0, COMPLEX_TYPE)
10325 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10326 return non_lvalue_loc (loc, fold_build1_loc (loc, REALPART_EXPR, type, arg0));;
10327 break;
10329 CASE_FLT_FN (BUILT_IN_CIMAG):
10330 if (validate_arg (arg0, COMPLEX_TYPE)
10331 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10332 return non_lvalue_loc (loc, fold_build1_loc (loc, IMAGPART_EXPR, type, arg0));
10333 break;
10335 CASE_FLT_FN (BUILT_IN_CCOS):
10336 return fold_builtin_ccos(loc, arg0, type, fndecl, /*hyper=*/ false);
10338 CASE_FLT_FN (BUILT_IN_CCOSH):
10339 return fold_builtin_ccos(loc, arg0, type, fndecl, /*hyper=*/ true);
10341 CASE_FLT_FN (BUILT_IN_CPROJ):
10342 return fold_builtin_cproj(loc, arg0, type);
10344 CASE_FLT_FN (BUILT_IN_CSIN):
10345 if (validate_arg (arg0, COMPLEX_TYPE)
10346 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10347 return do_mpc_arg1 (arg0, type, mpc_sin);
10348 break;
10350 CASE_FLT_FN (BUILT_IN_CSINH):
10351 if (validate_arg (arg0, COMPLEX_TYPE)
10352 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10353 return do_mpc_arg1 (arg0, type, mpc_sinh);
10354 break;
10356 CASE_FLT_FN (BUILT_IN_CTAN):
10357 if (validate_arg (arg0, COMPLEX_TYPE)
10358 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10359 return do_mpc_arg1 (arg0, type, mpc_tan);
10360 break;
10362 CASE_FLT_FN (BUILT_IN_CTANH):
10363 if (validate_arg (arg0, COMPLEX_TYPE)
10364 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10365 return do_mpc_arg1 (arg0, type, mpc_tanh);
10366 break;
10368 CASE_FLT_FN (BUILT_IN_CLOG):
10369 if (validate_arg (arg0, COMPLEX_TYPE)
10370 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10371 return do_mpc_arg1 (arg0, type, mpc_log);
10372 break;
10374 CASE_FLT_FN (BUILT_IN_CSQRT):
10375 if (validate_arg (arg0, COMPLEX_TYPE)
10376 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10377 return do_mpc_arg1 (arg0, type, mpc_sqrt);
10378 break;
10380 CASE_FLT_FN (BUILT_IN_CASIN):
10381 if (validate_arg (arg0, COMPLEX_TYPE)
10382 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10383 return do_mpc_arg1 (arg0, type, mpc_asin);
10384 break;
10386 CASE_FLT_FN (BUILT_IN_CACOS):
10387 if (validate_arg (arg0, COMPLEX_TYPE)
10388 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10389 return do_mpc_arg1 (arg0, type, mpc_acos);
10390 break;
10392 CASE_FLT_FN (BUILT_IN_CATAN):
10393 if (validate_arg (arg0, COMPLEX_TYPE)
10394 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10395 return do_mpc_arg1 (arg0, type, mpc_atan);
10396 break;
10398 CASE_FLT_FN (BUILT_IN_CASINH):
10399 if (validate_arg (arg0, COMPLEX_TYPE)
10400 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10401 return do_mpc_arg1 (arg0, type, mpc_asinh);
10402 break;
10404 CASE_FLT_FN (BUILT_IN_CACOSH):
10405 if (validate_arg (arg0, COMPLEX_TYPE)
10406 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10407 return do_mpc_arg1 (arg0, type, mpc_acosh);
10408 break;
10410 CASE_FLT_FN (BUILT_IN_CATANH):
10411 if (validate_arg (arg0, COMPLEX_TYPE)
10412 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
10413 return do_mpc_arg1 (arg0, type, mpc_atanh);
10414 break;
10416 CASE_FLT_FN (BUILT_IN_CABS):
10417 return fold_builtin_cabs (loc, arg0, type, fndecl);
10419 CASE_FLT_FN (BUILT_IN_CARG):
10420 return fold_builtin_carg (loc, arg0, type);
10422 CASE_FLT_FN (BUILT_IN_SQRT):
10423 return fold_builtin_sqrt (loc, arg0, type);
10425 CASE_FLT_FN (BUILT_IN_CBRT):
10426 return fold_builtin_cbrt (loc, arg0, type);
10428 CASE_FLT_FN (BUILT_IN_ASIN):
10429 if (validate_arg (arg0, REAL_TYPE))
10430 return do_mpfr_arg1 (arg0, type, mpfr_asin,
10431 &dconstm1, &dconst1, true);
10432 break;
10434 CASE_FLT_FN (BUILT_IN_ACOS):
10435 if (validate_arg (arg0, REAL_TYPE))
10436 return do_mpfr_arg1 (arg0, type, mpfr_acos,
10437 &dconstm1, &dconst1, true);
10438 break;
10440 CASE_FLT_FN (BUILT_IN_ATAN):
10441 if (validate_arg (arg0, REAL_TYPE))
10442 return do_mpfr_arg1 (arg0, type, mpfr_atan, NULL, NULL, 0);
10443 break;
10445 CASE_FLT_FN (BUILT_IN_ASINH):
10446 if (validate_arg (arg0, REAL_TYPE))
10447 return do_mpfr_arg1 (arg0, type, mpfr_asinh, NULL, NULL, 0);
10448 break;
10450 CASE_FLT_FN (BUILT_IN_ACOSH):
10451 if (validate_arg (arg0, REAL_TYPE))
10452 return do_mpfr_arg1 (arg0, type, mpfr_acosh,
10453 &dconst1, NULL, true);
10454 break;
10456 CASE_FLT_FN (BUILT_IN_ATANH):
10457 if (validate_arg (arg0, REAL_TYPE))
10458 return do_mpfr_arg1 (arg0, type, mpfr_atanh,
10459 &dconstm1, &dconst1, false);
10460 break;
10462 CASE_FLT_FN (BUILT_IN_SIN):
10463 if (validate_arg (arg0, REAL_TYPE))
10464 return do_mpfr_arg1 (arg0, type, mpfr_sin, NULL, NULL, 0);
10465 break;
10467 CASE_FLT_FN (BUILT_IN_COS):
10468 return fold_builtin_cos (loc, arg0, type, fndecl);
10470 CASE_FLT_FN (BUILT_IN_TAN):
10471 return fold_builtin_tan (arg0, type);
10473 CASE_FLT_FN (BUILT_IN_CEXP):
10474 return fold_builtin_cexp (loc, arg0, type);
10476 CASE_FLT_FN (BUILT_IN_CEXPI):
10477 if (validate_arg (arg0, REAL_TYPE))
10478 return do_mpfr_sincos (arg0, NULL_TREE, NULL_TREE);
10479 break;
10481 CASE_FLT_FN (BUILT_IN_SINH):
10482 if (validate_arg (arg0, REAL_TYPE))
10483 return do_mpfr_arg1 (arg0, type, mpfr_sinh, NULL, NULL, 0);
10484 break;
10486 CASE_FLT_FN (BUILT_IN_COSH):
10487 return fold_builtin_cosh (loc, arg0, type, fndecl);
10489 CASE_FLT_FN (BUILT_IN_TANH):
10490 if (validate_arg (arg0, REAL_TYPE))
10491 return do_mpfr_arg1 (arg0, type, mpfr_tanh, NULL, NULL, 0);
10492 break;
10494 CASE_FLT_FN (BUILT_IN_ERF):
10495 if (validate_arg (arg0, REAL_TYPE))
10496 return do_mpfr_arg1 (arg0, type, mpfr_erf, NULL, NULL, 0);
10497 break;
10499 CASE_FLT_FN (BUILT_IN_ERFC):
10500 if (validate_arg (arg0, REAL_TYPE))
10501 return do_mpfr_arg1 (arg0, type, mpfr_erfc, NULL, NULL, 0);
10502 break;
10504 CASE_FLT_FN (BUILT_IN_TGAMMA):
10505 if (validate_arg (arg0, REAL_TYPE))
10506 return do_mpfr_arg1 (arg0, type, mpfr_gamma, NULL, NULL, 0);
10507 break;
10509 CASE_FLT_FN (BUILT_IN_EXP):
10510 return fold_builtin_exponent (loc, fndecl, arg0, mpfr_exp);
10512 CASE_FLT_FN (BUILT_IN_EXP2):
10513 return fold_builtin_exponent (loc, fndecl, arg0, mpfr_exp2);
10515 CASE_FLT_FN (BUILT_IN_EXP10):
10516 CASE_FLT_FN (BUILT_IN_POW10):
10517 return fold_builtin_exponent (loc, fndecl, arg0, mpfr_exp10);
10519 CASE_FLT_FN (BUILT_IN_EXPM1):
10520 if (validate_arg (arg0, REAL_TYPE))
10521 return do_mpfr_arg1 (arg0, type, mpfr_expm1, NULL, NULL, 0);
10522 break;
10524 CASE_FLT_FN (BUILT_IN_LOG):
10525 return fold_builtin_logarithm (loc, fndecl, arg0, mpfr_log);
10527 CASE_FLT_FN (BUILT_IN_LOG2):
10528 return fold_builtin_logarithm (loc, fndecl, arg0, mpfr_log2);
10530 CASE_FLT_FN (BUILT_IN_LOG10):
10531 return fold_builtin_logarithm (loc, fndecl, arg0, mpfr_log10);
10533 CASE_FLT_FN (BUILT_IN_LOG1P):
10534 if (validate_arg (arg0, REAL_TYPE))
10535 return do_mpfr_arg1 (arg0, type, mpfr_log1p,
10536 &dconstm1, NULL, false);
10537 break;
10539 CASE_FLT_FN (BUILT_IN_J0):
10540 if (validate_arg (arg0, REAL_TYPE))
10541 return do_mpfr_arg1 (arg0, type, mpfr_j0,
10542 NULL, NULL, 0);
10543 break;
10545 CASE_FLT_FN (BUILT_IN_J1):
10546 if (validate_arg (arg0, REAL_TYPE))
10547 return do_mpfr_arg1 (arg0, type, mpfr_j1,
10548 NULL, NULL, 0);
10549 break;
10551 CASE_FLT_FN (BUILT_IN_Y0):
10552 if (validate_arg (arg0, REAL_TYPE))
10553 return do_mpfr_arg1 (arg0, type, mpfr_y0,
10554 &dconst0, NULL, false);
10555 break;
10557 CASE_FLT_FN (BUILT_IN_Y1):
10558 if (validate_arg (arg0, REAL_TYPE))
10559 return do_mpfr_arg1 (arg0, type, mpfr_y1,
10560 &dconst0, NULL, false);
10561 break;
10563 CASE_FLT_FN (BUILT_IN_NAN):
10564 case BUILT_IN_NAND32:
10565 case BUILT_IN_NAND64:
10566 case BUILT_IN_NAND128:
10567 return fold_builtin_nan (arg0, type, true);
10569 CASE_FLT_FN (BUILT_IN_NANS):
10570 return fold_builtin_nan (arg0, type, false);
10572 CASE_FLT_FN (BUILT_IN_FLOOR):
10573 return fold_builtin_floor (loc, fndecl, arg0);
10575 CASE_FLT_FN (BUILT_IN_CEIL):
10576 return fold_builtin_ceil (loc, fndecl, arg0);
10578 CASE_FLT_FN (BUILT_IN_TRUNC):
10579 return fold_builtin_trunc (loc, fndecl, arg0);
10581 CASE_FLT_FN (BUILT_IN_ROUND):
10582 return fold_builtin_round (loc, fndecl, arg0);
10584 CASE_FLT_FN (BUILT_IN_NEARBYINT):
10585 CASE_FLT_FN (BUILT_IN_RINT):
10586 return fold_trunc_transparent_mathfn (loc, fndecl, arg0);
10588 CASE_FLT_FN (BUILT_IN_ICEIL):
10589 CASE_FLT_FN (BUILT_IN_LCEIL):
10590 CASE_FLT_FN (BUILT_IN_LLCEIL):
10591 CASE_FLT_FN (BUILT_IN_LFLOOR):
10592 CASE_FLT_FN (BUILT_IN_IFLOOR):
10593 CASE_FLT_FN (BUILT_IN_LLFLOOR):
10594 CASE_FLT_FN (BUILT_IN_IROUND):
10595 CASE_FLT_FN (BUILT_IN_LROUND):
10596 CASE_FLT_FN (BUILT_IN_LLROUND):
10597 return fold_builtin_int_roundingfn (loc, fndecl, arg0);
10599 CASE_FLT_FN (BUILT_IN_IRINT):
10600 CASE_FLT_FN (BUILT_IN_LRINT):
10601 CASE_FLT_FN (BUILT_IN_LLRINT):
10602 return fold_fixed_mathfn (loc, fndecl, arg0);
10604 case BUILT_IN_BSWAP16:
10605 case BUILT_IN_BSWAP32:
10606 case BUILT_IN_BSWAP64:
10607 return fold_builtin_bswap (fndecl, arg0);
10609 CASE_INT_FN (BUILT_IN_FFS):
10610 CASE_INT_FN (BUILT_IN_CLZ):
10611 CASE_INT_FN (BUILT_IN_CTZ):
10612 CASE_INT_FN (BUILT_IN_CLRSB):
10613 CASE_INT_FN (BUILT_IN_POPCOUNT):
10614 CASE_INT_FN (BUILT_IN_PARITY):
10615 return fold_builtin_bitop (fndecl, arg0);
10617 CASE_FLT_FN (BUILT_IN_SIGNBIT):
10618 return fold_builtin_signbit (loc, arg0, type);
10620 CASE_FLT_FN (BUILT_IN_SIGNIFICAND):
10621 return fold_builtin_significand (loc, arg0, type);
10623 CASE_FLT_FN (BUILT_IN_ILOGB):
10624 CASE_FLT_FN (BUILT_IN_LOGB):
10625 return fold_builtin_logb (loc, arg0, type);
10627 case BUILT_IN_ISASCII:
10628 return fold_builtin_isascii (loc, arg0);
10630 case BUILT_IN_TOASCII:
10631 return fold_builtin_toascii (loc, arg0);
10633 case BUILT_IN_ISDIGIT:
10634 return fold_builtin_isdigit (loc, arg0);
10636 CASE_FLT_FN (BUILT_IN_FINITE):
10637 case BUILT_IN_FINITED32:
10638 case BUILT_IN_FINITED64:
10639 case BUILT_IN_FINITED128:
10640 case BUILT_IN_ISFINITE:
10642 tree ret = fold_builtin_classify (loc, fndecl, arg0, BUILT_IN_ISFINITE);
10643 if (ret)
10644 return ret;
10645 return fold_builtin_interclass_mathfn (loc, fndecl, arg0);
10648 CASE_FLT_FN (BUILT_IN_ISINF):
10649 case BUILT_IN_ISINFD32:
10650 case BUILT_IN_ISINFD64:
10651 case BUILT_IN_ISINFD128:
10653 tree ret = fold_builtin_classify (loc, fndecl, arg0, BUILT_IN_ISINF);
10654 if (ret)
10655 return ret;
10656 return fold_builtin_interclass_mathfn (loc, fndecl, arg0);
10659 case BUILT_IN_ISNORMAL:
10660 return fold_builtin_interclass_mathfn (loc, fndecl, arg0);
10662 case BUILT_IN_ISINF_SIGN:
10663 return fold_builtin_classify (loc, fndecl, arg0, BUILT_IN_ISINF_SIGN);
10665 CASE_FLT_FN (BUILT_IN_ISNAN):
10666 case BUILT_IN_ISNAND32:
10667 case BUILT_IN_ISNAND64:
10668 case BUILT_IN_ISNAND128:
10669 return fold_builtin_classify (loc, fndecl, arg0, BUILT_IN_ISNAN);
10671 case BUILT_IN_PRINTF:
10672 case BUILT_IN_PRINTF_UNLOCKED:
10673 case BUILT_IN_VPRINTF:
10674 return fold_builtin_printf (loc, fndecl, arg0, NULL_TREE, ignore, fcode);
10676 case BUILT_IN_FREE:
10677 if (integer_zerop (arg0))
10678 return build_empty_stmt (loc);
10679 break;
10681 default:
10682 break;
10685 return NULL_TREE;
10689 /* Fold a call to built-in function FNDECL with 2 arguments, ARG0 and ARG1.
10690 IGNORE is true if the result of the function call is ignored. This
10691 function returns NULL_TREE if no simplification was possible. */
10693 static tree
10694 fold_builtin_2 (location_t loc, tree fndecl, tree arg0, tree arg1, bool ignore)
10696 tree type = TREE_TYPE (TREE_TYPE (fndecl));
10697 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
10699 switch (fcode)
10701 CASE_FLT_FN (BUILT_IN_JN):
10702 if (validate_arg (arg0, INTEGER_TYPE)
10703 && validate_arg (arg1, REAL_TYPE))
10704 return do_mpfr_bessel_n (arg0, arg1, type, mpfr_jn, NULL, 0);
10705 break;
10707 CASE_FLT_FN (BUILT_IN_YN):
10708 if (validate_arg (arg0, INTEGER_TYPE)
10709 && validate_arg (arg1, REAL_TYPE))
10710 return do_mpfr_bessel_n (arg0, arg1, type, mpfr_yn,
10711 &dconst0, false);
10712 break;
10714 CASE_FLT_FN (BUILT_IN_DREM):
10715 CASE_FLT_FN (BUILT_IN_REMAINDER):
10716 if (validate_arg (arg0, REAL_TYPE)
10717 && validate_arg(arg1, REAL_TYPE))
10718 return do_mpfr_arg2 (arg0, arg1, type, mpfr_remainder);
10719 break;
10721 CASE_FLT_FN_REENT (BUILT_IN_GAMMA): /* GAMMA_R */
10722 CASE_FLT_FN_REENT (BUILT_IN_LGAMMA): /* LGAMMA_R */
10723 if (validate_arg (arg0, REAL_TYPE)
10724 && validate_arg(arg1, POINTER_TYPE))
10725 return do_mpfr_lgamma_r (arg0, arg1, type);
10726 break;
10728 CASE_FLT_FN (BUILT_IN_ATAN2):
10729 if (validate_arg (arg0, REAL_TYPE)
10730 && validate_arg(arg1, REAL_TYPE))
10731 return do_mpfr_arg2 (arg0, arg1, type, mpfr_atan2);
10732 break;
10734 CASE_FLT_FN (BUILT_IN_FDIM):
10735 if (validate_arg (arg0, REAL_TYPE)
10736 && validate_arg(arg1, REAL_TYPE))
10737 return do_mpfr_arg2 (arg0, arg1, type, mpfr_dim);
10738 break;
10740 CASE_FLT_FN (BUILT_IN_HYPOT):
10741 return fold_builtin_hypot (loc, fndecl, arg0, arg1, type);
10743 CASE_FLT_FN (BUILT_IN_CPOW):
10744 if (validate_arg (arg0, COMPLEX_TYPE)
10745 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE
10746 && validate_arg (arg1, COMPLEX_TYPE)
10747 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg1))) == REAL_TYPE)
10748 return do_mpc_arg2 (arg0, arg1, type, /*do_nonfinite=*/ 0, mpc_pow);
10749 break;
10751 CASE_FLT_FN (BUILT_IN_LDEXP):
10752 return fold_builtin_load_exponent (loc, arg0, arg1, type, /*ldexp=*/true);
10753 CASE_FLT_FN (BUILT_IN_SCALBN):
10754 CASE_FLT_FN (BUILT_IN_SCALBLN):
10755 return fold_builtin_load_exponent (loc, arg0, arg1,
10756 type, /*ldexp=*/false);
10758 CASE_FLT_FN (BUILT_IN_FREXP):
10759 return fold_builtin_frexp (loc, arg0, arg1, type);
10761 CASE_FLT_FN (BUILT_IN_MODF):
10762 return fold_builtin_modf (loc, arg0, arg1, type);
10764 case BUILT_IN_BZERO:
10765 return fold_builtin_bzero (loc, arg0, arg1, ignore);
10767 case BUILT_IN_FPUTS:
10768 return fold_builtin_fputs (loc, arg0, arg1, ignore, false, NULL_TREE);
10770 case BUILT_IN_FPUTS_UNLOCKED:
10771 return fold_builtin_fputs (loc, arg0, arg1, ignore, true, NULL_TREE);
10773 case BUILT_IN_STRSTR:
10774 return fold_builtin_strstr (loc, arg0, arg1, type);
10776 case BUILT_IN_STRCAT:
10777 return fold_builtin_strcat (loc, arg0, arg1);
10779 case BUILT_IN_STRSPN:
10780 return fold_builtin_strspn (loc, arg0, arg1);
10782 case BUILT_IN_STRCSPN:
10783 return fold_builtin_strcspn (loc, arg0, arg1);
10785 case BUILT_IN_STRCHR:
10786 case BUILT_IN_INDEX:
10787 return fold_builtin_strchr (loc, arg0, arg1, type);
10789 case BUILT_IN_STRRCHR:
10790 case BUILT_IN_RINDEX:
10791 return fold_builtin_strrchr (loc, arg0, arg1, type);
10793 case BUILT_IN_STRCPY:
10794 return fold_builtin_strcpy (loc, fndecl, arg0, arg1, NULL_TREE);
10796 case BUILT_IN_STPCPY:
10797 if (ignore)
10799 tree fn = builtin_decl_implicit (BUILT_IN_STRCPY);
10800 if (!fn)
10801 break;
10803 return build_call_expr_loc (loc, fn, 2, arg0, arg1);
10805 else
10806 return fold_builtin_stpcpy (loc, fndecl, arg0, arg1);
10807 break;
10809 case BUILT_IN_STRCMP:
10810 return fold_builtin_strcmp (loc, arg0, arg1);
10812 case BUILT_IN_STRPBRK:
10813 return fold_builtin_strpbrk (loc, arg0, arg1, type);
10815 case BUILT_IN_EXPECT:
10816 return fold_builtin_expect (loc, arg0, arg1);
10818 CASE_FLT_FN (BUILT_IN_POW):
10819 return fold_builtin_pow (loc, fndecl, arg0, arg1, type);
10821 CASE_FLT_FN (BUILT_IN_POWI):
10822 return fold_builtin_powi (loc, fndecl, arg0, arg1, type);
10824 CASE_FLT_FN (BUILT_IN_COPYSIGN):
10825 return fold_builtin_copysign (loc, fndecl, arg0, arg1, type);
10827 CASE_FLT_FN (BUILT_IN_FMIN):
10828 return fold_builtin_fmin_fmax (loc, arg0, arg1, type, /*max=*/false);
10830 CASE_FLT_FN (BUILT_IN_FMAX):
10831 return fold_builtin_fmin_fmax (loc, arg0, arg1, type, /*max=*/true);
10833 case BUILT_IN_ISGREATER:
10834 return fold_builtin_unordered_cmp (loc, fndecl,
10835 arg0, arg1, UNLE_EXPR, LE_EXPR);
10836 case BUILT_IN_ISGREATEREQUAL:
10837 return fold_builtin_unordered_cmp (loc, fndecl,
10838 arg0, arg1, UNLT_EXPR, LT_EXPR);
10839 case BUILT_IN_ISLESS:
10840 return fold_builtin_unordered_cmp (loc, fndecl,
10841 arg0, arg1, UNGE_EXPR, GE_EXPR);
10842 case BUILT_IN_ISLESSEQUAL:
10843 return fold_builtin_unordered_cmp (loc, fndecl,
10844 arg0, arg1, UNGT_EXPR, GT_EXPR);
10845 case BUILT_IN_ISLESSGREATER:
10846 return fold_builtin_unordered_cmp (loc, fndecl,
10847 arg0, arg1, UNEQ_EXPR, EQ_EXPR);
10848 case BUILT_IN_ISUNORDERED:
10849 return fold_builtin_unordered_cmp (loc, fndecl,
10850 arg0, arg1, UNORDERED_EXPR,
10851 NOP_EXPR);
10853 /* We do the folding for va_start in the expander. */
10854 case BUILT_IN_VA_START:
10855 break;
10857 case BUILT_IN_SPRINTF:
10858 return fold_builtin_sprintf (loc, arg0, arg1, NULL_TREE, ignore);
10860 case BUILT_IN_OBJECT_SIZE:
10861 return fold_builtin_object_size (arg0, arg1);
10863 case BUILT_IN_PRINTF:
10864 case BUILT_IN_PRINTF_UNLOCKED:
10865 case BUILT_IN_VPRINTF:
10866 return fold_builtin_printf (loc, fndecl, arg0, arg1, ignore, fcode);
10868 case BUILT_IN_PRINTF_CHK:
10869 case BUILT_IN_VPRINTF_CHK:
10870 if (!validate_arg (arg0, INTEGER_TYPE)
10871 || TREE_SIDE_EFFECTS (arg0))
10872 return NULL_TREE;
10873 else
10874 return fold_builtin_printf (loc, fndecl,
10875 arg1, NULL_TREE, ignore, fcode);
10876 break;
10878 case BUILT_IN_FPRINTF:
10879 case BUILT_IN_FPRINTF_UNLOCKED:
10880 case BUILT_IN_VFPRINTF:
10881 return fold_builtin_fprintf (loc, fndecl, arg0, arg1, NULL_TREE,
10882 ignore, fcode);
10884 case BUILT_IN_ATOMIC_ALWAYS_LOCK_FREE:
10885 return fold_builtin_atomic_always_lock_free (arg0, arg1);
10887 case BUILT_IN_ATOMIC_IS_LOCK_FREE:
10888 return fold_builtin_atomic_is_lock_free (arg0, arg1);
10890 default:
10891 break;
10893 return NULL_TREE;
10896 /* Fold a call to built-in function FNDECL with 3 arguments, ARG0, ARG1,
10897 and ARG2. IGNORE is true if the result of the function call is ignored.
10898 This function returns NULL_TREE if no simplification was possible. */
10900 static tree
10901 fold_builtin_3 (location_t loc, tree fndecl,
10902 tree arg0, tree arg1, tree arg2, bool ignore)
10904 tree type = TREE_TYPE (TREE_TYPE (fndecl));
10905 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
10906 switch (fcode)
10909 CASE_FLT_FN (BUILT_IN_SINCOS):
10910 return fold_builtin_sincos (loc, arg0, arg1, arg2);
10912 CASE_FLT_FN (BUILT_IN_FMA):
10913 return fold_builtin_fma (loc, arg0, arg1, arg2, type);
10914 break;
10916 CASE_FLT_FN (BUILT_IN_REMQUO):
10917 if (validate_arg (arg0, REAL_TYPE)
10918 && validate_arg(arg1, REAL_TYPE)
10919 && validate_arg(arg2, POINTER_TYPE))
10920 return do_mpfr_remquo (arg0, arg1, arg2);
10921 break;
10923 case BUILT_IN_MEMSET:
10924 return fold_builtin_memset (loc, arg0, arg1, arg2, type, ignore);
10926 case BUILT_IN_BCOPY:
10927 return fold_builtin_memory_op (loc, arg1, arg0, arg2,
10928 void_type_node, true, /*endp=*/3);
10930 case BUILT_IN_MEMCPY:
10931 return fold_builtin_memory_op (loc, arg0, arg1, arg2,
10932 type, ignore, /*endp=*/0);
10934 case BUILT_IN_MEMPCPY:
10935 return fold_builtin_memory_op (loc, arg0, arg1, arg2,
10936 type, ignore, /*endp=*/1);
10938 case BUILT_IN_MEMMOVE:
10939 return fold_builtin_memory_op (loc, arg0, arg1, arg2,
10940 type, ignore, /*endp=*/3);
10942 case BUILT_IN_STRNCAT:
10943 return fold_builtin_strncat (loc, arg0, arg1, arg2);
10945 case BUILT_IN_STRNCPY:
10946 return fold_builtin_strncpy (loc, fndecl, arg0, arg1, arg2, NULL_TREE);
10948 case BUILT_IN_STRNCMP:
10949 return fold_builtin_strncmp (loc, arg0, arg1, arg2);
10951 case BUILT_IN_MEMCHR:
10952 return fold_builtin_memchr (loc, arg0, arg1, arg2, type);
10954 case BUILT_IN_BCMP:
10955 case BUILT_IN_MEMCMP:
10956 return fold_builtin_memcmp (loc, arg0, arg1, arg2);;
10958 case BUILT_IN_SPRINTF:
10959 return fold_builtin_sprintf (loc, arg0, arg1, arg2, ignore);
10961 case BUILT_IN_SNPRINTF:
10962 return fold_builtin_snprintf (loc, arg0, arg1, arg2, NULL_TREE, ignore);
10964 case BUILT_IN_STRCPY_CHK:
10965 case BUILT_IN_STPCPY_CHK:
10966 return fold_builtin_stxcpy_chk (loc, fndecl, arg0, arg1, arg2, NULL_TREE,
10967 ignore, fcode);
10969 case BUILT_IN_STRCAT_CHK:
10970 return fold_builtin_strcat_chk (loc, fndecl, arg0, arg1, arg2);
10972 case BUILT_IN_PRINTF_CHK:
10973 case BUILT_IN_VPRINTF_CHK:
10974 if (!validate_arg (arg0, INTEGER_TYPE)
10975 || TREE_SIDE_EFFECTS (arg0))
10976 return NULL_TREE;
10977 else
10978 return fold_builtin_printf (loc, fndecl, arg1, arg2, ignore, fcode);
10979 break;
10981 case BUILT_IN_FPRINTF:
10982 case BUILT_IN_FPRINTF_UNLOCKED:
10983 case BUILT_IN_VFPRINTF:
10984 return fold_builtin_fprintf (loc, fndecl, arg0, arg1, arg2,
10985 ignore, fcode);
10987 case BUILT_IN_FPRINTF_CHK:
10988 case BUILT_IN_VFPRINTF_CHK:
10989 if (!validate_arg (arg1, INTEGER_TYPE)
10990 || TREE_SIDE_EFFECTS (arg1))
10991 return NULL_TREE;
10992 else
10993 return fold_builtin_fprintf (loc, fndecl, arg0, arg2, NULL_TREE,
10994 ignore, fcode);
10996 default:
10997 break;
10999 return NULL_TREE;
11002 /* Fold a call to built-in function FNDECL with 4 arguments, ARG0, ARG1,
11003 ARG2, and ARG3. IGNORE is true if the result of the function call is
11004 ignored. This function returns NULL_TREE if no simplification was
11005 possible. */
11007 static tree
11008 fold_builtin_4 (location_t loc, tree fndecl,
11009 tree arg0, tree arg1, tree arg2, tree arg3, bool ignore)
11011 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
11013 switch (fcode)
11015 case BUILT_IN_MEMCPY_CHK:
11016 case BUILT_IN_MEMPCPY_CHK:
11017 case BUILT_IN_MEMMOVE_CHK:
11018 case BUILT_IN_MEMSET_CHK:
11019 return fold_builtin_memory_chk (loc, fndecl, arg0, arg1, arg2, arg3,
11020 NULL_TREE, ignore,
11021 DECL_FUNCTION_CODE (fndecl));
11023 case BUILT_IN_STRNCPY_CHK:
11024 case BUILT_IN_STPNCPY_CHK:
11025 return fold_builtin_stxncpy_chk (loc, arg0, arg1, arg2, arg3, NULL_TREE,
11026 ignore, fcode);
11028 case BUILT_IN_STRNCAT_CHK:
11029 return fold_builtin_strncat_chk (loc, fndecl, arg0, arg1, arg2, arg3);
11031 case BUILT_IN_SNPRINTF:
11032 return fold_builtin_snprintf (loc, arg0, arg1, arg2, arg3, ignore);
11034 case BUILT_IN_FPRINTF_CHK:
11035 case BUILT_IN_VFPRINTF_CHK:
11036 if (!validate_arg (arg1, INTEGER_TYPE)
11037 || TREE_SIDE_EFFECTS (arg1))
11038 return NULL_TREE;
11039 else
11040 return fold_builtin_fprintf (loc, fndecl, arg0, arg2, arg3,
11041 ignore, fcode);
11042 break;
11044 default:
11045 break;
11047 return NULL_TREE;
11050 /* Fold a call to built-in function FNDECL. ARGS is an array of NARGS
11051 arguments, where NARGS <= 4. IGNORE is true if the result of the
11052 function call is ignored. This function returns NULL_TREE if no
11053 simplification was possible. Note that this only folds builtins with
11054 fixed argument patterns. Foldings that do varargs-to-varargs
11055 transformations, or that match calls with more than 4 arguments,
11056 need to be handled with fold_builtin_varargs instead. */
11058 #define MAX_ARGS_TO_FOLD_BUILTIN 4
11060 static tree
11061 fold_builtin_n (location_t loc, tree fndecl, tree *args, int nargs, bool ignore)
11063 tree ret = NULL_TREE;
11065 switch (nargs)
11067 case 0:
11068 ret = fold_builtin_0 (loc, fndecl, ignore);
11069 break;
11070 case 1:
11071 ret = fold_builtin_1 (loc, fndecl, args[0], ignore);
11072 break;
11073 case 2:
11074 ret = fold_builtin_2 (loc, fndecl, args[0], args[1], ignore);
11075 break;
11076 case 3:
11077 ret = fold_builtin_3 (loc, fndecl, args[0], args[1], args[2], ignore);
11078 break;
11079 case 4:
11080 ret = fold_builtin_4 (loc, fndecl, args[0], args[1], args[2], args[3],
11081 ignore);
11082 break;
11083 default:
11084 break;
11086 if (ret)
11088 ret = build1 (NOP_EXPR, TREE_TYPE (ret), ret);
11089 SET_EXPR_LOCATION (ret, loc);
11090 TREE_NO_WARNING (ret) = 1;
11091 return ret;
11093 return NULL_TREE;
11096 /* Builtins with folding operations that operate on "..." arguments
11097 need special handling; we need to store the arguments in a convenient
11098 data structure before attempting any folding. Fortunately there are
11099 only a few builtins that fall into this category. FNDECL is the
11100 function, EXP is the CALL_EXPR for the call, and IGNORE is true if the
11101 result of the function call is ignored. */
11103 static tree
11104 fold_builtin_varargs (location_t loc, tree fndecl, tree exp,
11105 bool ignore ATTRIBUTE_UNUSED)
11107 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
11108 tree ret = NULL_TREE;
11110 switch (fcode)
11112 case BUILT_IN_SPRINTF_CHK:
11113 case BUILT_IN_VSPRINTF_CHK:
11114 ret = fold_builtin_sprintf_chk (loc, exp, fcode);
11115 break;
11117 case BUILT_IN_SNPRINTF_CHK:
11118 case BUILT_IN_VSNPRINTF_CHK:
11119 ret = fold_builtin_snprintf_chk (loc, exp, NULL_TREE, fcode);
11120 break;
11122 case BUILT_IN_FPCLASSIFY:
11123 ret = fold_builtin_fpclassify (loc, exp);
11124 break;
11126 default:
11127 break;
11129 if (ret)
11131 ret = build1 (NOP_EXPR, TREE_TYPE (ret), ret);
11132 SET_EXPR_LOCATION (ret, loc);
11133 TREE_NO_WARNING (ret) = 1;
11134 return ret;
11136 return NULL_TREE;
11139 /* Return true if FNDECL shouldn't be folded right now.
11140 If a built-in function has an inline attribute always_inline
11141 wrapper, defer folding it after always_inline functions have
11142 been inlined, otherwise e.g. -D_FORTIFY_SOURCE checking
11143 might not be performed. */
11145 bool
11146 avoid_folding_inline_builtin (tree fndecl)
11148 return (DECL_DECLARED_INLINE_P (fndecl)
11149 && DECL_DISREGARD_INLINE_LIMITS (fndecl)
11150 && cfun
11151 && !cfun->always_inline_functions_inlined
11152 && lookup_attribute ("always_inline", DECL_ATTRIBUTES (fndecl)));
11155 /* A wrapper function for builtin folding that prevents warnings for
11156 "statement without effect" and the like, caused by removing the
11157 call node earlier than the warning is generated. */
11159 tree
11160 fold_call_expr (location_t loc, tree exp, bool ignore)
11162 tree ret = NULL_TREE;
11163 tree fndecl = get_callee_fndecl (exp);
11164 if (fndecl
11165 && TREE_CODE (fndecl) == FUNCTION_DECL
11166 && DECL_BUILT_IN (fndecl)
11167 /* If CALL_EXPR_VA_ARG_PACK is set, the arguments aren't finalized
11168 yet. Defer folding until we see all the arguments
11169 (after inlining). */
11170 && !CALL_EXPR_VA_ARG_PACK (exp))
11172 int nargs = call_expr_nargs (exp);
11174 /* Before gimplification CALL_EXPR_VA_ARG_PACK is not set, but
11175 instead last argument is __builtin_va_arg_pack (). Defer folding
11176 even in that case, until arguments are finalized. */
11177 if (nargs && TREE_CODE (CALL_EXPR_ARG (exp, nargs - 1)) == CALL_EXPR)
11179 tree fndecl2 = get_callee_fndecl (CALL_EXPR_ARG (exp, nargs - 1));
11180 if (fndecl2
11181 && TREE_CODE (fndecl2) == FUNCTION_DECL
11182 && DECL_BUILT_IN_CLASS (fndecl2) == BUILT_IN_NORMAL
11183 && DECL_FUNCTION_CODE (fndecl2) == BUILT_IN_VA_ARG_PACK)
11184 return NULL_TREE;
11187 if (avoid_folding_inline_builtin (fndecl))
11188 return NULL_TREE;
11190 if (DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
11191 return targetm.fold_builtin (fndecl, call_expr_nargs (exp),
11192 CALL_EXPR_ARGP (exp), ignore);
11193 else
11195 if (nargs <= MAX_ARGS_TO_FOLD_BUILTIN)
11197 tree *args = CALL_EXPR_ARGP (exp);
11198 ret = fold_builtin_n (loc, fndecl, args, nargs, ignore);
11200 if (!ret)
11201 ret = fold_builtin_varargs (loc, fndecl, exp, ignore);
11202 if (ret)
11203 return ret;
11206 return NULL_TREE;
11209 /* Conveniently construct a function call expression. FNDECL names the
11210 function to be called and N arguments are passed in the array
11211 ARGARRAY. */
11213 tree
11214 build_call_expr_loc_array (location_t loc, tree fndecl, int n, tree *argarray)
11216 tree fntype = TREE_TYPE (fndecl);
11217 tree fn = build1 (ADDR_EXPR, build_pointer_type (fntype), fndecl);
11219 return fold_builtin_call_array (loc, TREE_TYPE (fntype), fn, n, argarray);
11222 /* Conveniently construct a function call expression. FNDECL names the
11223 function to be called and the arguments are passed in the vector
11224 VEC. */
11226 tree
11227 build_call_expr_loc_vec (location_t loc, tree fndecl, vec<tree, va_gc> *vec)
11229 return build_call_expr_loc_array (loc, fndecl, vec_safe_length (vec),
11230 vec_safe_address (vec));
11234 /* Conveniently construct a function call expression. FNDECL names the
11235 function to be called, N is the number of arguments, and the "..."
11236 parameters are the argument expressions. */
11238 tree
11239 build_call_expr_loc (location_t loc, tree fndecl, int n, ...)
11241 va_list ap;
11242 tree *argarray = XALLOCAVEC (tree, n);
11243 int i;
11245 va_start (ap, n);
11246 for (i = 0; i < n; i++)
11247 argarray[i] = va_arg (ap, tree);
11248 va_end (ap);
11249 return build_call_expr_loc_array (loc, fndecl, n, argarray);
11252 /* Like build_call_expr_loc (UNKNOWN_LOCATION, ...). Duplicated because
11253 varargs macros aren't supported by all bootstrap compilers. */
11255 tree
11256 build_call_expr (tree fndecl, int n, ...)
11258 va_list ap;
11259 tree *argarray = XALLOCAVEC (tree, n);
11260 int i;
11262 va_start (ap, n);
11263 for (i = 0; i < n; i++)
11264 argarray[i] = va_arg (ap, tree);
11265 va_end (ap);
11266 return build_call_expr_loc_array (UNKNOWN_LOCATION, fndecl, n, argarray);
11269 /* Construct a CALL_EXPR with type TYPE with FN as the function expression.
11270 N arguments are passed in the array ARGARRAY. */
11272 tree
11273 fold_builtin_call_array (location_t loc, tree type,
11274 tree fn,
11275 int n,
11276 tree *argarray)
11278 tree ret = NULL_TREE;
11279 tree exp;
11281 if (TREE_CODE (fn) == ADDR_EXPR)
11283 tree fndecl = TREE_OPERAND (fn, 0);
11284 if (TREE_CODE (fndecl) == FUNCTION_DECL
11285 && DECL_BUILT_IN (fndecl))
11287 /* If last argument is __builtin_va_arg_pack (), arguments to this
11288 function are not finalized yet. Defer folding until they are. */
11289 if (n && TREE_CODE (argarray[n - 1]) == CALL_EXPR)
11291 tree fndecl2 = get_callee_fndecl (argarray[n - 1]);
11292 if (fndecl2
11293 && TREE_CODE (fndecl2) == FUNCTION_DECL
11294 && DECL_BUILT_IN_CLASS (fndecl2) == BUILT_IN_NORMAL
11295 && DECL_FUNCTION_CODE (fndecl2) == BUILT_IN_VA_ARG_PACK)
11296 return build_call_array_loc (loc, type, fn, n, argarray);
11298 if (avoid_folding_inline_builtin (fndecl))
11299 return build_call_array_loc (loc, type, fn, n, argarray);
11300 if (DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
11302 ret = targetm.fold_builtin (fndecl, n, argarray, false);
11303 if (ret)
11304 return ret;
11306 return build_call_array_loc (loc, type, fn, n, argarray);
11308 else if (n <= MAX_ARGS_TO_FOLD_BUILTIN)
11310 /* First try the transformations that don't require consing up
11311 an exp. */
11312 ret = fold_builtin_n (loc, fndecl, argarray, n, false);
11313 if (ret)
11314 return ret;
11317 /* If we got this far, we need to build an exp. */
11318 exp = build_call_array_loc (loc, type, fn, n, argarray);
11319 ret = fold_builtin_varargs (loc, fndecl, exp, false);
11320 return ret ? ret : exp;
11324 return build_call_array_loc (loc, type, fn, n, argarray);
11327 /* Construct a new CALL_EXPR to FNDECL using the tail of the argument
11328 list ARGS along with N new arguments in NEWARGS. SKIP is the number
11329 of arguments in ARGS to be omitted. OLDNARGS is the number of
11330 elements in ARGS. */
11332 static tree
11333 rewrite_call_expr_valist (location_t loc, int oldnargs, tree *args,
11334 int skip, tree fndecl, int n, va_list newargs)
11336 int nargs = oldnargs - skip + n;
11337 tree *buffer;
11339 if (n > 0)
11341 int i, j;
11343 buffer = XALLOCAVEC (tree, nargs);
11344 for (i = 0; i < n; i++)
11345 buffer[i] = va_arg (newargs, tree);
11346 for (j = skip; j < oldnargs; j++, i++)
11347 buffer[i] = args[j];
11349 else
11350 buffer = args + skip;
11352 return build_call_expr_loc_array (loc, fndecl, nargs, buffer);
11355 /* Construct a new CALL_EXPR to FNDECL using the tail of the argument
11356 list ARGS along with N new arguments specified as the "..."
11357 parameters. SKIP is the number of arguments in ARGS to be omitted.
11358 OLDNARGS is the number of elements in ARGS. */
11360 static tree
11361 rewrite_call_expr_array (location_t loc, int oldnargs, tree *args,
11362 int skip, tree fndecl, int n, ...)
11364 va_list ap;
11365 tree t;
11367 va_start (ap, n);
11368 t = rewrite_call_expr_valist (loc, oldnargs, args, skip, fndecl, n, ap);
11369 va_end (ap);
11371 return t;
11374 /* Construct a new CALL_EXPR using the tail of the argument list of EXP
11375 along with N new arguments specified as the "..." parameters. SKIP
11376 is the number of arguments in EXP to be omitted. This function is used
11377 to do varargs-to-varargs transformations. */
11379 static tree
11380 rewrite_call_expr (location_t loc, tree exp, int skip, tree fndecl, int n, ...)
11382 va_list ap;
11383 tree t;
11385 va_start (ap, n);
11386 t = rewrite_call_expr_valist (loc, call_expr_nargs (exp),
11387 CALL_EXPR_ARGP (exp), skip, fndecl, n, ap);
11388 va_end (ap);
11390 return t;
11393 /* Validate a single argument ARG against a tree code CODE representing
11394 a type. */
11396 static bool
11397 validate_arg (const_tree arg, enum tree_code code)
11399 if (!arg)
11400 return false;
11401 else if (code == POINTER_TYPE)
11402 return POINTER_TYPE_P (TREE_TYPE (arg));
11403 else if (code == INTEGER_TYPE)
11404 return INTEGRAL_TYPE_P (TREE_TYPE (arg));
11405 return code == TREE_CODE (TREE_TYPE (arg));
11408 /* This function validates the types of a function call argument list
11409 against a specified list of tree_codes. If the last specifier is a 0,
11410 that represents an ellipses, otherwise the last specifier must be a
11411 VOID_TYPE.
11413 This is the GIMPLE version of validate_arglist. Eventually we want to
11414 completely convert builtins.c to work from GIMPLEs and the tree based
11415 validate_arglist will then be removed. */
11417 bool
11418 validate_gimple_arglist (const_gimple call, ...)
11420 enum tree_code code;
11421 bool res = 0;
11422 va_list ap;
11423 const_tree arg;
11424 size_t i;
11426 va_start (ap, call);
11427 i = 0;
11431 code = (enum tree_code) va_arg (ap, int);
11432 switch (code)
11434 case 0:
11435 /* This signifies an ellipses, any further arguments are all ok. */
11436 res = true;
11437 goto end;
11438 case VOID_TYPE:
11439 /* This signifies an endlink, if no arguments remain, return
11440 true, otherwise return false. */
11441 res = (i == gimple_call_num_args (call));
11442 goto end;
11443 default:
11444 /* If no parameters remain or the parameter's code does not
11445 match the specified code, return false. Otherwise continue
11446 checking any remaining arguments. */
11447 arg = gimple_call_arg (call, i++);
11448 if (!validate_arg (arg, code))
11449 goto end;
11450 break;
11453 while (1);
11455 /* We need gotos here since we can only have one VA_CLOSE in a
11456 function. */
11457 end: ;
11458 va_end (ap);
11460 return res;
11463 /* This function validates the types of a function call argument list
11464 against a specified list of tree_codes. If the last specifier is a 0,
11465 that represents an ellipses, otherwise the last specifier must be a
11466 VOID_TYPE. */
11468 bool
11469 validate_arglist (const_tree callexpr, ...)
11471 enum tree_code code;
11472 bool res = 0;
11473 va_list ap;
11474 const_call_expr_arg_iterator iter;
11475 const_tree arg;
11477 va_start (ap, callexpr);
11478 init_const_call_expr_arg_iterator (callexpr, &iter);
11482 code = (enum tree_code) va_arg (ap, int);
11483 switch (code)
11485 case 0:
11486 /* This signifies an ellipses, any further arguments are all ok. */
11487 res = true;
11488 goto end;
11489 case VOID_TYPE:
11490 /* This signifies an endlink, if no arguments remain, return
11491 true, otherwise return false. */
11492 res = !more_const_call_expr_args_p (&iter);
11493 goto end;
11494 default:
11495 /* If no parameters remain or the parameter's code does not
11496 match the specified code, return false. Otherwise continue
11497 checking any remaining arguments. */
11498 arg = next_const_call_expr_arg (&iter);
11499 if (!validate_arg (arg, code))
11500 goto end;
11501 break;
11504 while (1);
11506 /* We need gotos here since we can only have one VA_CLOSE in a
11507 function. */
11508 end: ;
11509 va_end (ap);
11511 return res;
11514 /* Default target-specific builtin expander that does nothing. */
11517 default_expand_builtin (tree exp ATTRIBUTE_UNUSED,
11518 rtx target ATTRIBUTE_UNUSED,
11519 rtx subtarget ATTRIBUTE_UNUSED,
11520 enum machine_mode mode ATTRIBUTE_UNUSED,
11521 int ignore ATTRIBUTE_UNUSED)
11523 return NULL_RTX;
11526 /* Returns true is EXP represents data that would potentially reside
11527 in a readonly section. */
11529 static bool
11530 readonly_data_expr (tree exp)
11532 STRIP_NOPS (exp);
11534 if (TREE_CODE (exp) != ADDR_EXPR)
11535 return false;
11537 exp = get_base_address (TREE_OPERAND (exp, 0));
11538 if (!exp)
11539 return false;
11541 /* Make sure we call decl_readonly_section only for trees it
11542 can handle (since it returns true for everything it doesn't
11543 understand). */
11544 if (TREE_CODE (exp) == STRING_CST
11545 || TREE_CODE (exp) == CONSTRUCTOR
11546 || (TREE_CODE (exp) == VAR_DECL && TREE_STATIC (exp)))
11547 return decl_readonly_section (exp, 0);
11548 else
11549 return false;
11552 /* Simplify a call to the strstr builtin. S1 and S2 are the arguments
11553 to the call, and TYPE is its return type.
11555 Return NULL_TREE if no simplification was possible, otherwise return the
11556 simplified form of the call as a tree.
11558 The simplified form may be a constant or other expression which
11559 computes the same value, but in a more efficient manner (including
11560 calls to other builtin functions).
11562 The call may contain arguments which need to be evaluated, but
11563 which are not useful to determine the result of the call. In
11564 this case we return a chain of COMPOUND_EXPRs. The LHS of each
11565 COMPOUND_EXPR will be an argument which must be evaluated.
11566 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
11567 COMPOUND_EXPR in the chain will contain the tree for the simplified
11568 form of the builtin function call. */
11570 static tree
11571 fold_builtin_strstr (location_t loc, tree s1, tree s2, tree type)
11573 if (!validate_arg (s1, POINTER_TYPE)
11574 || !validate_arg (s2, POINTER_TYPE))
11575 return NULL_TREE;
11576 else
11578 tree fn;
11579 const char *p1, *p2;
11581 p2 = c_getstr (s2);
11582 if (p2 == NULL)
11583 return NULL_TREE;
11585 p1 = c_getstr (s1);
11586 if (p1 != NULL)
11588 const char *r = strstr (p1, p2);
11589 tree tem;
11591 if (r == NULL)
11592 return build_int_cst (TREE_TYPE (s1), 0);
11594 /* Return an offset into the constant string argument. */
11595 tem = fold_build_pointer_plus_hwi_loc (loc, s1, r - p1);
11596 return fold_convert_loc (loc, type, tem);
11599 /* The argument is const char *, and the result is char *, so we need
11600 a type conversion here to avoid a warning. */
11601 if (p2[0] == '\0')
11602 return fold_convert_loc (loc, type, s1);
11604 if (p2[1] != '\0')
11605 return NULL_TREE;
11607 fn = builtin_decl_implicit (BUILT_IN_STRCHR);
11608 if (!fn)
11609 return NULL_TREE;
11611 /* New argument list transforming strstr(s1, s2) to
11612 strchr(s1, s2[0]). */
11613 return build_call_expr_loc (loc, fn, 2, s1,
11614 build_int_cst (integer_type_node, p2[0]));
11618 /* Simplify a call to the strchr builtin. S1 and S2 are the arguments to
11619 the call, and TYPE is its return type.
11621 Return NULL_TREE if no simplification was possible, otherwise return the
11622 simplified form of the call as a tree.
11624 The simplified form may be a constant or other expression which
11625 computes the same value, but in a more efficient manner (including
11626 calls to other builtin functions).
11628 The call may contain arguments which need to be evaluated, but
11629 which are not useful to determine the result of the call. In
11630 this case we return a chain of COMPOUND_EXPRs. The LHS of each
11631 COMPOUND_EXPR will be an argument which must be evaluated.
11632 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
11633 COMPOUND_EXPR in the chain will contain the tree for the simplified
11634 form of the builtin function call. */
11636 static tree
11637 fold_builtin_strchr (location_t loc, tree s1, tree s2, tree type)
11639 if (!validate_arg (s1, POINTER_TYPE)
11640 || !validate_arg (s2, INTEGER_TYPE))
11641 return NULL_TREE;
11642 else
11644 const char *p1;
11646 if (TREE_CODE (s2) != INTEGER_CST)
11647 return NULL_TREE;
11649 p1 = c_getstr (s1);
11650 if (p1 != NULL)
11652 char c;
11653 const char *r;
11654 tree tem;
11656 if (target_char_cast (s2, &c))
11657 return NULL_TREE;
11659 r = strchr (p1, c);
11661 if (r == NULL)
11662 return build_int_cst (TREE_TYPE (s1), 0);
11664 /* Return an offset into the constant string argument. */
11665 tem = fold_build_pointer_plus_hwi_loc (loc, s1, r - p1);
11666 return fold_convert_loc (loc, type, tem);
11668 return NULL_TREE;
11672 /* Simplify a call to the strrchr builtin. S1 and S2 are the arguments to
11673 the call, and TYPE is its return type.
11675 Return NULL_TREE if no simplification was possible, otherwise return the
11676 simplified form of the call as a tree.
11678 The simplified form may be a constant or other expression which
11679 computes the same value, but in a more efficient manner (including
11680 calls to other builtin functions).
11682 The call may contain arguments which need to be evaluated, but
11683 which are not useful to determine the result of the call. In
11684 this case we return a chain of COMPOUND_EXPRs. The LHS of each
11685 COMPOUND_EXPR will be an argument which must be evaluated.
11686 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
11687 COMPOUND_EXPR in the chain will contain the tree for the simplified
11688 form of the builtin function call. */
11690 static tree
11691 fold_builtin_strrchr (location_t loc, tree s1, tree s2, tree type)
11693 if (!validate_arg (s1, POINTER_TYPE)
11694 || !validate_arg (s2, INTEGER_TYPE))
11695 return NULL_TREE;
11696 else
11698 tree fn;
11699 const char *p1;
11701 if (TREE_CODE (s2) != INTEGER_CST)
11702 return NULL_TREE;
11704 p1 = c_getstr (s1);
11705 if (p1 != NULL)
11707 char c;
11708 const char *r;
11709 tree tem;
11711 if (target_char_cast (s2, &c))
11712 return NULL_TREE;
11714 r = strrchr (p1, c);
11716 if (r == NULL)
11717 return build_int_cst (TREE_TYPE (s1), 0);
11719 /* Return an offset into the constant string argument. */
11720 tem = fold_build_pointer_plus_hwi_loc (loc, s1, r - p1);
11721 return fold_convert_loc (loc, type, tem);
11724 if (! integer_zerop (s2))
11725 return NULL_TREE;
11727 fn = builtin_decl_implicit (BUILT_IN_STRCHR);
11728 if (!fn)
11729 return NULL_TREE;
11731 /* Transform strrchr(s1, '\0') to strchr(s1, '\0'). */
11732 return build_call_expr_loc (loc, fn, 2, s1, s2);
11736 /* Simplify a call to the strpbrk builtin. S1 and S2 are the arguments
11737 to the call, and TYPE is its return type.
11739 Return NULL_TREE if no simplification was possible, otherwise return the
11740 simplified form of the call as a tree.
11742 The simplified form may be a constant or other expression which
11743 computes the same value, but in a more efficient manner (including
11744 calls to other builtin functions).
11746 The call may contain arguments which need to be evaluated, but
11747 which are not useful to determine the result of the call. In
11748 this case we return a chain of COMPOUND_EXPRs. The LHS of each
11749 COMPOUND_EXPR will be an argument which must be evaluated.
11750 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
11751 COMPOUND_EXPR in the chain will contain the tree for the simplified
11752 form of the builtin function call. */
11754 static tree
11755 fold_builtin_strpbrk (location_t loc, tree s1, tree s2, tree type)
11757 if (!validate_arg (s1, POINTER_TYPE)
11758 || !validate_arg (s2, POINTER_TYPE))
11759 return NULL_TREE;
11760 else
11762 tree fn;
11763 const char *p1, *p2;
11765 p2 = c_getstr (s2);
11766 if (p2 == NULL)
11767 return NULL_TREE;
11769 p1 = c_getstr (s1);
11770 if (p1 != NULL)
11772 const char *r = strpbrk (p1, p2);
11773 tree tem;
11775 if (r == NULL)
11776 return build_int_cst (TREE_TYPE (s1), 0);
11778 /* Return an offset into the constant string argument. */
11779 tem = fold_build_pointer_plus_hwi_loc (loc, s1, r - p1);
11780 return fold_convert_loc (loc, type, tem);
11783 if (p2[0] == '\0')
11784 /* strpbrk(x, "") == NULL.
11785 Evaluate and ignore s1 in case it had side-effects. */
11786 return omit_one_operand_loc (loc, TREE_TYPE (s1), integer_zero_node, s1);
11788 if (p2[1] != '\0')
11789 return NULL_TREE; /* Really call strpbrk. */
11791 fn = builtin_decl_implicit (BUILT_IN_STRCHR);
11792 if (!fn)
11793 return NULL_TREE;
11795 /* New argument list transforming strpbrk(s1, s2) to
11796 strchr(s1, s2[0]). */
11797 return build_call_expr_loc (loc, fn, 2, s1,
11798 build_int_cst (integer_type_node, p2[0]));
11802 /* Simplify a call to the strcat builtin. DST and SRC are the arguments
11803 to the call.
11805 Return NULL_TREE if no simplification was possible, otherwise return the
11806 simplified form of the call as a tree.
11808 The simplified form may be a constant or other expression which
11809 computes the same value, but in a more efficient manner (including
11810 calls to other builtin functions).
11812 The call may contain arguments which need to be evaluated, but
11813 which are not useful to determine the result of the call. In
11814 this case we return a chain of COMPOUND_EXPRs. The LHS of each
11815 COMPOUND_EXPR will be an argument which must be evaluated.
11816 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
11817 COMPOUND_EXPR in the chain will contain the tree for the simplified
11818 form of the builtin function call. */
11820 static tree
11821 fold_builtin_strcat (location_t loc ATTRIBUTE_UNUSED, tree dst, tree src)
11823 if (!validate_arg (dst, POINTER_TYPE)
11824 || !validate_arg (src, POINTER_TYPE))
11825 return NULL_TREE;
11826 else
11828 const char *p = c_getstr (src);
11830 /* If the string length is zero, return the dst parameter. */
11831 if (p && *p == '\0')
11832 return dst;
11834 if (optimize_insn_for_speed_p ())
11836 /* See if we can store by pieces into (dst + strlen(dst)). */
11837 tree newdst, call;
11838 tree strlen_fn = builtin_decl_implicit (BUILT_IN_STRLEN);
11839 tree strcpy_fn = builtin_decl_implicit (BUILT_IN_STRCPY);
11841 if (!strlen_fn || !strcpy_fn)
11842 return NULL_TREE;
11844 /* If we don't have a movstr we don't want to emit an strcpy
11845 call. We have to do that if the length of the source string
11846 isn't computable (in that case we can use memcpy probably
11847 later expanding to a sequence of mov instructions). If we
11848 have movstr instructions we can emit strcpy calls. */
11849 if (!HAVE_movstr)
11851 tree len = c_strlen (src, 1);
11852 if (! len || TREE_SIDE_EFFECTS (len))
11853 return NULL_TREE;
11856 /* Stabilize the argument list. */
11857 dst = builtin_save_expr (dst);
11859 /* Create strlen (dst). */
11860 newdst = build_call_expr_loc (loc, strlen_fn, 1, dst);
11861 /* Create (dst p+ strlen (dst)). */
11863 newdst = fold_build_pointer_plus_loc (loc, dst, newdst);
11864 newdst = builtin_save_expr (newdst);
11866 call = build_call_expr_loc (loc, strcpy_fn, 2, newdst, src);
11867 return build2 (COMPOUND_EXPR, TREE_TYPE (dst), call, dst);
11869 return NULL_TREE;
11873 /* Simplify a call to the strncat builtin. DST, SRC, and LEN are the
11874 arguments to the call.
11876 Return NULL_TREE if no simplification was possible, otherwise return the
11877 simplified form of the call as a tree.
11879 The simplified form may be a constant or other expression which
11880 computes the same value, but in a more efficient manner (including
11881 calls to other builtin functions).
11883 The call may contain arguments which need to be evaluated, but
11884 which are not useful to determine the result of the call. In
11885 this case we return a chain of COMPOUND_EXPRs. The LHS of each
11886 COMPOUND_EXPR will be an argument which must be evaluated.
11887 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
11888 COMPOUND_EXPR in the chain will contain the tree for the simplified
11889 form of the builtin function call. */
11891 static tree
11892 fold_builtin_strncat (location_t loc, tree dst, tree src, tree len)
11894 if (!validate_arg (dst, POINTER_TYPE)
11895 || !validate_arg (src, POINTER_TYPE)
11896 || !validate_arg (len, INTEGER_TYPE))
11897 return NULL_TREE;
11898 else
11900 const char *p = c_getstr (src);
11902 /* If the requested length is zero, or the src parameter string
11903 length is zero, return the dst parameter. */
11904 if (integer_zerop (len) || (p && *p == '\0'))
11905 return omit_two_operands_loc (loc, TREE_TYPE (dst), dst, src, len);
11907 /* If the requested len is greater than or equal to the string
11908 length, call strcat. */
11909 if (TREE_CODE (len) == INTEGER_CST && p
11910 && compare_tree_int (len, strlen (p)) >= 0)
11912 tree fn = builtin_decl_implicit (BUILT_IN_STRCAT);
11914 /* If the replacement _DECL isn't initialized, don't do the
11915 transformation. */
11916 if (!fn)
11917 return NULL_TREE;
11919 return build_call_expr_loc (loc, fn, 2, dst, src);
11921 return NULL_TREE;
11925 /* Simplify a call to the strspn builtin. S1 and S2 are the arguments
11926 to the call.
11928 Return NULL_TREE if no simplification was possible, otherwise return the
11929 simplified form of the call as a tree.
11931 The simplified form may be a constant or other expression which
11932 computes the same value, but in a more efficient manner (including
11933 calls to other builtin functions).
11935 The call may contain arguments which need to be evaluated, but
11936 which are not useful to determine the result of the call. In
11937 this case we return a chain of COMPOUND_EXPRs. The LHS of each
11938 COMPOUND_EXPR will be an argument which must be evaluated.
11939 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
11940 COMPOUND_EXPR in the chain will contain the tree for the simplified
11941 form of the builtin function call. */
11943 static tree
11944 fold_builtin_strspn (location_t loc, tree s1, tree s2)
11946 if (!validate_arg (s1, POINTER_TYPE)
11947 || !validate_arg (s2, POINTER_TYPE))
11948 return NULL_TREE;
11949 else
11951 const char *p1 = c_getstr (s1), *p2 = c_getstr (s2);
11953 /* If both arguments are constants, evaluate at compile-time. */
11954 if (p1 && p2)
11956 const size_t r = strspn (p1, p2);
11957 return build_int_cst (size_type_node, r);
11960 /* If either argument is "", return NULL_TREE. */
11961 if ((p1 && *p1 == '\0') || (p2 && *p2 == '\0'))
11962 /* Evaluate and ignore both arguments in case either one has
11963 side-effects. */
11964 return omit_two_operands_loc (loc, size_type_node, size_zero_node,
11965 s1, s2);
11966 return NULL_TREE;
11970 /* Simplify a call to the strcspn builtin. S1 and S2 are the arguments
11971 to the call.
11973 Return NULL_TREE if no simplification was possible, otherwise return the
11974 simplified form of the call as a tree.
11976 The simplified form may be a constant or other expression which
11977 computes the same value, but in a more efficient manner (including
11978 calls to other builtin functions).
11980 The call may contain arguments which need to be evaluated, but
11981 which are not useful to determine the result of the call. In
11982 this case we return a chain of COMPOUND_EXPRs. The LHS of each
11983 COMPOUND_EXPR will be an argument which must be evaluated.
11984 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
11985 COMPOUND_EXPR in the chain will contain the tree for the simplified
11986 form of the builtin function call. */
11988 static tree
11989 fold_builtin_strcspn (location_t loc, tree s1, tree s2)
11991 if (!validate_arg (s1, POINTER_TYPE)
11992 || !validate_arg (s2, POINTER_TYPE))
11993 return NULL_TREE;
11994 else
11996 const char *p1 = c_getstr (s1), *p2 = c_getstr (s2);
11998 /* If both arguments are constants, evaluate at compile-time. */
11999 if (p1 && p2)
12001 const size_t r = strcspn (p1, p2);
12002 return build_int_cst (size_type_node, r);
12005 /* If the first argument is "", return NULL_TREE. */
12006 if (p1 && *p1 == '\0')
12008 /* Evaluate and ignore argument s2 in case it has
12009 side-effects. */
12010 return omit_one_operand_loc (loc, size_type_node,
12011 size_zero_node, s2);
12014 /* If the second argument is "", return __builtin_strlen(s1). */
12015 if (p2 && *p2 == '\0')
12017 tree fn = builtin_decl_implicit (BUILT_IN_STRLEN);
12019 /* If the replacement _DECL isn't initialized, don't do the
12020 transformation. */
12021 if (!fn)
12022 return NULL_TREE;
12024 return build_call_expr_loc (loc, fn, 1, s1);
12026 return NULL_TREE;
12030 /* Fold a call to the fputs builtin. ARG0 and ARG1 are the arguments
12031 to the call. IGNORE is true if the value returned
12032 by the builtin will be ignored. UNLOCKED is true is true if this
12033 actually a call to fputs_unlocked. If LEN in non-NULL, it represents
12034 the known length of the string. Return NULL_TREE if no simplification
12035 was possible. */
12037 tree
12038 fold_builtin_fputs (location_t loc, tree arg0, tree arg1,
12039 bool ignore, bool unlocked, tree len)
12041 /* If we're using an unlocked function, assume the other unlocked
12042 functions exist explicitly. */
12043 tree const fn_fputc = (unlocked
12044 ? builtin_decl_explicit (BUILT_IN_FPUTC_UNLOCKED)
12045 : builtin_decl_implicit (BUILT_IN_FPUTC));
12046 tree const fn_fwrite = (unlocked
12047 ? builtin_decl_explicit (BUILT_IN_FWRITE_UNLOCKED)
12048 : builtin_decl_implicit (BUILT_IN_FWRITE));
12050 /* If the return value is used, don't do the transformation. */
12051 if (!ignore)
12052 return NULL_TREE;
12054 /* Verify the arguments in the original call. */
12055 if (!validate_arg (arg0, POINTER_TYPE)
12056 || !validate_arg (arg1, POINTER_TYPE))
12057 return NULL_TREE;
12059 if (! len)
12060 len = c_strlen (arg0, 0);
12062 /* Get the length of the string passed to fputs. If the length
12063 can't be determined, punt. */
12064 if (!len
12065 || TREE_CODE (len) != INTEGER_CST)
12066 return NULL_TREE;
12068 switch (compare_tree_int (len, 1))
12070 case -1: /* length is 0, delete the call entirely . */
12071 return omit_one_operand_loc (loc, integer_type_node,
12072 integer_zero_node, arg1);;
12074 case 0: /* length is 1, call fputc. */
12076 const char *p = c_getstr (arg0);
12078 if (p != NULL)
12080 if (fn_fputc)
12081 return build_call_expr_loc (loc, fn_fputc, 2,
12082 build_int_cst
12083 (integer_type_node, p[0]), arg1);
12084 else
12085 return NULL_TREE;
12088 /* FALLTHROUGH */
12089 case 1: /* length is greater than 1, call fwrite. */
12091 /* If optimizing for size keep fputs. */
12092 if (optimize_function_for_size_p (cfun))
12093 return NULL_TREE;
12094 /* New argument list transforming fputs(string, stream) to
12095 fwrite(string, 1, len, stream). */
12096 if (fn_fwrite)
12097 return build_call_expr_loc (loc, fn_fwrite, 4, arg0,
12098 size_one_node, len, arg1);
12099 else
12100 return NULL_TREE;
12102 default:
12103 gcc_unreachable ();
12105 return NULL_TREE;
12108 /* Fold the next_arg or va_start call EXP. Returns true if there was an error
12109 produced. False otherwise. This is done so that we don't output the error
12110 or warning twice or three times. */
12112 bool
12113 fold_builtin_next_arg (tree exp, bool va_start_p)
12115 tree fntype = TREE_TYPE (current_function_decl);
12116 int nargs = call_expr_nargs (exp);
12117 tree arg;
12118 /* There is good chance the current input_location points inside the
12119 definition of the va_start macro (perhaps on the token for
12120 builtin) in a system header, so warnings will not be emitted.
12121 Use the location in real source code. */
12122 source_location current_location =
12123 linemap_unwind_to_first_non_reserved_loc (line_table, input_location,
12124 NULL);
12126 if (!stdarg_p (fntype))
12128 error ("%<va_start%> used in function with fixed args");
12129 return true;
12132 if (va_start_p)
12134 if (va_start_p && (nargs != 2))
12136 error ("wrong number of arguments to function %<va_start%>");
12137 return true;
12139 arg = CALL_EXPR_ARG (exp, 1);
12141 /* We use __builtin_va_start (ap, 0, 0) or __builtin_next_arg (0, 0)
12142 when we checked the arguments and if needed issued a warning. */
12143 else
12145 if (nargs == 0)
12147 /* Evidently an out of date version of <stdarg.h>; can't validate
12148 va_start's second argument, but can still work as intended. */
12149 warning_at (current_location,
12150 OPT_Wvarargs,
12151 "%<__builtin_next_arg%> called without an argument");
12152 return true;
12154 else if (nargs > 1)
12156 error ("wrong number of arguments to function %<__builtin_next_arg%>");
12157 return true;
12159 arg = CALL_EXPR_ARG (exp, 0);
12162 if (TREE_CODE (arg) == SSA_NAME)
12163 arg = SSA_NAME_VAR (arg);
12165 /* We destructively modify the call to be __builtin_va_start (ap, 0)
12166 or __builtin_next_arg (0) the first time we see it, after checking
12167 the arguments and if needed issuing a warning. */
12168 if (!integer_zerop (arg))
12170 tree last_parm = tree_last (DECL_ARGUMENTS (current_function_decl));
12172 /* Strip off all nops for the sake of the comparison. This
12173 is not quite the same as STRIP_NOPS. It does more.
12174 We must also strip off INDIRECT_EXPR for C++ reference
12175 parameters. */
12176 while (CONVERT_EXPR_P (arg)
12177 || TREE_CODE (arg) == INDIRECT_REF)
12178 arg = TREE_OPERAND (arg, 0);
12179 if (arg != last_parm)
12181 /* FIXME: Sometimes with the tree optimizers we can get the
12182 not the last argument even though the user used the last
12183 argument. We just warn and set the arg to be the last
12184 argument so that we will get wrong-code because of
12185 it. */
12186 warning_at (current_location,
12187 OPT_Wvarargs,
12188 "second parameter of %<va_start%> not last named argument");
12191 /* Undefined by C99 7.15.1.4p4 (va_start):
12192 "If the parameter parmN is declared with the register storage
12193 class, with a function or array type, or with a type that is
12194 not compatible with the type that results after application of
12195 the default argument promotions, the behavior is undefined."
12197 else if (DECL_REGISTER (arg))
12199 warning_at (current_location,
12200 OPT_Wvarargs,
12201 "undefined behaviour when second parameter of "
12202 "%<va_start%> is declared with %<register%> storage");
12205 /* We want to verify the second parameter just once before the tree
12206 optimizers are run and then avoid keeping it in the tree,
12207 as otherwise we could warn even for correct code like:
12208 void foo (int i, ...)
12209 { va_list ap; i++; va_start (ap, i); va_end (ap); } */
12210 if (va_start_p)
12211 CALL_EXPR_ARG (exp, 1) = integer_zero_node;
12212 else
12213 CALL_EXPR_ARG (exp, 0) = integer_zero_node;
12215 return false;
12219 /* Simplify a call to the sprintf builtin with arguments DEST, FMT, and ORIG.
12220 ORIG may be null if this is a 2-argument call. We don't attempt to
12221 simplify calls with more than 3 arguments.
12223 Return NULL_TREE if no simplification was possible, otherwise return the
12224 simplified form of the call as a tree. If IGNORED is true, it means that
12225 the caller does not use the returned value of the function. */
12227 static tree
12228 fold_builtin_sprintf (location_t loc, tree dest, tree fmt,
12229 tree orig, int ignored)
12231 tree call, retval;
12232 const char *fmt_str = NULL;
12234 /* Verify the required arguments in the original call. We deal with two
12235 types of sprintf() calls: 'sprintf (str, fmt)' and
12236 'sprintf (dest, "%s", orig)'. */
12237 if (!validate_arg (dest, POINTER_TYPE)
12238 || !validate_arg (fmt, POINTER_TYPE))
12239 return NULL_TREE;
12240 if (orig && !validate_arg (orig, POINTER_TYPE))
12241 return NULL_TREE;
12243 /* Check whether the format is a literal string constant. */
12244 fmt_str = c_getstr (fmt);
12245 if (fmt_str == NULL)
12246 return NULL_TREE;
12248 call = NULL_TREE;
12249 retval = NULL_TREE;
12251 if (!init_target_chars ())
12252 return NULL_TREE;
12254 /* If the format doesn't contain % args or %%, use strcpy. */
12255 if (strchr (fmt_str, target_percent) == NULL)
12257 tree fn = builtin_decl_implicit (BUILT_IN_STRCPY);
12259 if (!fn)
12260 return NULL_TREE;
12262 /* Don't optimize sprintf (buf, "abc", ptr++). */
12263 if (orig)
12264 return NULL_TREE;
12266 /* Convert sprintf (str, fmt) into strcpy (str, fmt) when
12267 'format' is known to contain no % formats. */
12268 call = build_call_expr_loc (loc, fn, 2, dest, fmt);
12269 if (!ignored)
12270 retval = build_int_cst (integer_type_node, strlen (fmt_str));
12273 /* If the format is "%s", use strcpy if the result isn't used. */
12274 else if (fmt_str && strcmp (fmt_str, target_percent_s) == 0)
12276 tree fn;
12277 fn = builtin_decl_implicit (BUILT_IN_STRCPY);
12279 if (!fn)
12280 return NULL_TREE;
12282 /* Don't crash on sprintf (str1, "%s"). */
12283 if (!orig)
12284 return NULL_TREE;
12286 /* Convert sprintf (str1, "%s", str2) into strcpy (str1, str2). */
12287 if (!ignored)
12289 retval = c_strlen (orig, 1);
12290 if (!retval || TREE_CODE (retval) != INTEGER_CST)
12291 return NULL_TREE;
12293 call = build_call_expr_loc (loc, fn, 2, dest, orig);
12296 if (call && retval)
12298 retval = fold_convert_loc
12299 (loc, TREE_TYPE (TREE_TYPE (builtin_decl_implicit (BUILT_IN_SPRINTF))),
12300 retval);
12301 return build2 (COMPOUND_EXPR, TREE_TYPE (retval), call, retval);
12303 else
12304 return call;
12307 /* Simplify a call to the snprintf builtin with arguments DEST, DESTSIZE,
12308 FMT, and ORIG. ORIG may be null if this is a 3-argument call. We don't
12309 attempt to simplify calls with more than 4 arguments.
12311 Return NULL_TREE if no simplification was possible, otherwise return the
12312 simplified form of the call as a tree. If IGNORED is true, it means that
12313 the caller does not use the returned value of the function. */
12315 static tree
12316 fold_builtin_snprintf (location_t loc, tree dest, tree destsize, tree fmt,
12317 tree orig, int ignored)
12319 tree call, retval;
12320 const char *fmt_str = NULL;
12321 unsigned HOST_WIDE_INT destlen;
12323 /* Verify the required arguments in the original call. We deal with two
12324 types of snprintf() calls: 'snprintf (str, cst, fmt)' and
12325 'snprintf (dest, cst, "%s", orig)'. */
12326 if (!validate_arg (dest, POINTER_TYPE)
12327 || !validate_arg (destsize, INTEGER_TYPE)
12328 || !validate_arg (fmt, POINTER_TYPE))
12329 return NULL_TREE;
12330 if (orig && !validate_arg (orig, POINTER_TYPE))
12331 return NULL_TREE;
12333 if (!host_integerp (destsize, 1))
12334 return NULL_TREE;
12336 /* Check whether the format is a literal string constant. */
12337 fmt_str = c_getstr (fmt);
12338 if (fmt_str == NULL)
12339 return NULL_TREE;
12341 call = NULL_TREE;
12342 retval = NULL_TREE;
12344 if (!init_target_chars ())
12345 return NULL_TREE;
12347 destlen = tree_low_cst (destsize, 1);
12349 /* If the format doesn't contain % args or %%, use strcpy. */
12350 if (strchr (fmt_str, target_percent) == NULL)
12352 tree fn = builtin_decl_implicit (BUILT_IN_STRCPY);
12353 size_t len = strlen (fmt_str);
12355 /* Don't optimize snprintf (buf, 4, "abc", ptr++). */
12356 if (orig)
12357 return NULL_TREE;
12359 /* We could expand this as
12360 memcpy (str, fmt, cst - 1); str[cst - 1] = '\0';
12361 or to
12362 memcpy (str, fmt_with_nul_at_cstm1, cst);
12363 but in the former case that might increase code size
12364 and in the latter case grow .rodata section too much.
12365 So punt for now. */
12366 if (len >= destlen)
12367 return NULL_TREE;
12369 if (!fn)
12370 return NULL_TREE;
12372 /* Convert snprintf (str, cst, fmt) into strcpy (str, fmt) when
12373 'format' is known to contain no % formats and
12374 strlen (fmt) < cst. */
12375 call = build_call_expr_loc (loc, fn, 2, dest, fmt);
12377 if (!ignored)
12378 retval = build_int_cst (integer_type_node, strlen (fmt_str));
12381 /* If the format is "%s", use strcpy if the result isn't used. */
12382 else if (fmt_str && strcmp (fmt_str, target_percent_s) == 0)
12384 tree fn = builtin_decl_implicit (BUILT_IN_STRCPY);
12385 unsigned HOST_WIDE_INT origlen;
12387 /* Don't crash on snprintf (str1, cst, "%s"). */
12388 if (!orig)
12389 return NULL_TREE;
12391 retval = c_strlen (orig, 1);
12392 if (!retval || !host_integerp (retval, 1))
12393 return NULL_TREE;
12395 origlen = tree_low_cst (retval, 1);
12396 /* We could expand this as
12397 memcpy (str1, str2, cst - 1); str1[cst - 1] = '\0';
12398 or to
12399 memcpy (str1, str2_with_nul_at_cstm1, cst);
12400 but in the former case that might increase code size
12401 and in the latter case grow .rodata section too much.
12402 So punt for now. */
12403 if (origlen >= destlen)
12404 return NULL_TREE;
12406 /* Convert snprintf (str1, cst, "%s", str2) into
12407 strcpy (str1, str2) if strlen (str2) < cst. */
12408 if (!fn)
12409 return NULL_TREE;
12411 call = build_call_expr_loc (loc, fn, 2, dest, orig);
12413 if (ignored)
12414 retval = NULL_TREE;
12417 if (call && retval)
12419 tree fn = builtin_decl_explicit (BUILT_IN_SNPRINTF);
12420 retval = fold_convert_loc (loc, TREE_TYPE (TREE_TYPE (fn)), retval);
12421 return build2 (COMPOUND_EXPR, TREE_TYPE (retval), call, retval);
12423 else
12424 return call;
12427 /* Expand a call EXP to __builtin_object_size. */
12430 expand_builtin_object_size (tree exp)
12432 tree ost;
12433 int object_size_type;
12434 tree fndecl = get_callee_fndecl (exp);
12436 if (!validate_arglist (exp, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
12438 error ("%Kfirst argument of %D must be a pointer, second integer constant",
12439 exp, fndecl);
12440 expand_builtin_trap ();
12441 return const0_rtx;
12444 ost = CALL_EXPR_ARG (exp, 1);
12445 STRIP_NOPS (ost);
12447 if (TREE_CODE (ost) != INTEGER_CST
12448 || tree_int_cst_sgn (ost) < 0
12449 || compare_tree_int (ost, 3) > 0)
12451 error ("%Klast argument of %D is not integer constant between 0 and 3",
12452 exp, fndecl);
12453 expand_builtin_trap ();
12454 return const0_rtx;
12457 object_size_type = tree_low_cst (ost, 0);
12459 return object_size_type < 2 ? constm1_rtx : const0_rtx;
12462 /* Expand EXP, a call to the __mem{cpy,pcpy,move,set}_chk builtin.
12463 FCODE is the BUILT_IN_* to use.
12464 Return NULL_RTX if we failed; the caller should emit a normal call,
12465 otherwise try to get the result in TARGET, if convenient (and in
12466 mode MODE if that's convenient). */
12468 static rtx
12469 expand_builtin_memory_chk (tree exp, rtx target, enum machine_mode mode,
12470 enum built_in_function fcode)
12472 tree dest, src, len, size;
12474 if (!validate_arglist (exp,
12475 POINTER_TYPE,
12476 fcode == BUILT_IN_MEMSET_CHK
12477 ? INTEGER_TYPE : POINTER_TYPE,
12478 INTEGER_TYPE, INTEGER_TYPE, VOID_TYPE))
12479 return NULL_RTX;
12481 dest = CALL_EXPR_ARG (exp, 0);
12482 src = CALL_EXPR_ARG (exp, 1);
12483 len = CALL_EXPR_ARG (exp, 2);
12484 size = CALL_EXPR_ARG (exp, 3);
12486 if (! host_integerp (size, 1))
12487 return NULL_RTX;
12489 if (host_integerp (len, 1) || integer_all_onesp (size))
12491 tree fn;
12493 if (! integer_all_onesp (size) && tree_int_cst_lt (size, len))
12495 warning_at (tree_nonartificial_location (exp),
12496 0, "%Kcall to %D will always overflow destination buffer",
12497 exp, get_callee_fndecl (exp));
12498 return NULL_RTX;
12501 fn = NULL_TREE;
12502 /* If __builtin_mem{cpy,pcpy,move,set}_chk is used, assume
12503 mem{cpy,pcpy,move,set} is available. */
12504 switch (fcode)
12506 case BUILT_IN_MEMCPY_CHK:
12507 fn = builtin_decl_explicit (BUILT_IN_MEMCPY);
12508 break;
12509 case BUILT_IN_MEMPCPY_CHK:
12510 fn = builtin_decl_explicit (BUILT_IN_MEMPCPY);
12511 break;
12512 case BUILT_IN_MEMMOVE_CHK:
12513 fn = builtin_decl_explicit (BUILT_IN_MEMMOVE);
12514 break;
12515 case BUILT_IN_MEMSET_CHK:
12516 fn = builtin_decl_explicit (BUILT_IN_MEMSET);
12517 break;
12518 default:
12519 break;
12522 if (! fn)
12523 return NULL_RTX;
12525 fn = build_call_nofold_loc (EXPR_LOCATION (exp), fn, 3, dest, src, len);
12526 gcc_assert (TREE_CODE (fn) == CALL_EXPR);
12527 CALL_EXPR_TAILCALL (fn) = CALL_EXPR_TAILCALL (exp);
12528 return expand_expr (fn, target, mode, EXPAND_NORMAL);
12530 else if (fcode == BUILT_IN_MEMSET_CHK)
12531 return NULL_RTX;
12532 else
12534 unsigned int dest_align = get_pointer_alignment (dest);
12536 /* If DEST is not a pointer type, call the normal function. */
12537 if (dest_align == 0)
12538 return NULL_RTX;
12540 /* If SRC and DEST are the same (and not volatile), do nothing. */
12541 if (operand_equal_p (src, dest, 0))
12543 tree expr;
12545 if (fcode != BUILT_IN_MEMPCPY_CHK)
12547 /* Evaluate and ignore LEN in case it has side-effects. */
12548 expand_expr (len, const0_rtx, VOIDmode, EXPAND_NORMAL);
12549 return expand_expr (dest, target, mode, EXPAND_NORMAL);
12552 expr = fold_build_pointer_plus (dest, len);
12553 return expand_expr (expr, target, mode, EXPAND_NORMAL);
12556 /* __memmove_chk special case. */
12557 if (fcode == BUILT_IN_MEMMOVE_CHK)
12559 unsigned int src_align = get_pointer_alignment (src);
12561 if (src_align == 0)
12562 return NULL_RTX;
12564 /* If src is categorized for a readonly section we can use
12565 normal __memcpy_chk. */
12566 if (readonly_data_expr (src))
12568 tree fn = builtin_decl_explicit (BUILT_IN_MEMCPY_CHK);
12569 if (!fn)
12570 return NULL_RTX;
12571 fn = build_call_nofold_loc (EXPR_LOCATION (exp), fn, 4,
12572 dest, src, len, size);
12573 gcc_assert (TREE_CODE (fn) == CALL_EXPR);
12574 CALL_EXPR_TAILCALL (fn) = CALL_EXPR_TAILCALL (exp);
12575 return expand_expr (fn, target, mode, EXPAND_NORMAL);
12578 return NULL_RTX;
12582 /* Emit warning if a buffer overflow is detected at compile time. */
12584 static void
12585 maybe_emit_chk_warning (tree exp, enum built_in_function fcode)
12587 int is_strlen = 0;
12588 tree len, size;
12589 location_t loc = tree_nonartificial_location (exp);
12591 switch (fcode)
12593 case BUILT_IN_STRCPY_CHK:
12594 case BUILT_IN_STPCPY_CHK:
12595 /* For __strcat_chk the warning will be emitted only if overflowing
12596 by at least strlen (dest) + 1 bytes. */
12597 case BUILT_IN_STRCAT_CHK:
12598 len = CALL_EXPR_ARG (exp, 1);
12599 size = CALL_EXPR_ARG (exp, 2);
12600 is_strlen = 1;
12601 break;
12602 case BUILT_IN_STRNCAT_CHK:
12603 case BUILT_IN_STRNCPY_CHK:
12604 case BUILT_IN_STPNCPY_CHK:
12605 len = CALL_EXPR_ARG (exp, 2);
12606 size = CALL_EXPR_ARG (exp, 3);
12607 break;
12608 case BUILT_IN_SNPRINTF_CHK:
12609 case BUILT_IN_VSNPRINTF_CHK:
12610 len = CALL_EXPR_ARG (exp, 1);
12611 size = CALL_EXPR_ARG (exp, 3);
12612 break;
12613 default:
12614 gcc_unreachable ();
12617 if (!len || !size)
12618 return;
12620 if (! host_integerp (size, 1) || integer_all_onesp (size))
12621 return;
12623 if (is_strlen)
12625 len = c_strlen (len, 1);
12626 if (! len || ! host_integerp (len, 1) || tree_int_cst_lt (len, size))
12627 return;
12629 else if (fcode == BUILT_IN_STRNCAT_CHK)
12631 tree src = CALL_EXPR_ARG (exp, 1);
12632 if (! src || ! host_integerp (len, 1) || tree_int_cst_lt (len, size))
12633 return;
12634 src = c_strlen (src, 1);
12635 if (! src || ! host_integerp (src, 1))
12637 warning_at (loc, 0, "%Kcall to %D might overflow destination buffer",
12638 exp, get_callee_fndecl (exp));
12639 return;
12641 else if (tree_int_cst_lt (src, size))
12642 return;
12644 else if (! host_integerp (len, 1) || ! tree_int_cst_lt (size, len))
12645 return;
12647 warning_at (loc, 0, "%Kcall to %D will always overflow destination buffer",
12648 exp, get_callee_fndecl (exp));
12651 /* Emit warning if a buffer overflow is detected at compile time
12652 in __sprintf_chk/__vsprintf_chk calls. */
12654 static void
12655 maybe_emit_sprintf_chk_warning (tree exp, enum built_in_function fcode)
12657 tree size, len, fmt;
12658 const char *fmt_str;
12659 int nargs = call_expr_nargs (exp);
12661 /* Verify the required arguments in the original call. */
12663 if (nargs < 4)
12664 return;
12665 size = CALL_EXPR_ARG (exp, 2);
12666 fmt = CALL_EXPR_ARG (exp, 3);
12668 if (! host_integerp (size, 1) || integer_all_onesp (size))
12669 return;
12671 /* Check whether the format is a literal string constant. */
12672 fmt_str = c_getstr (fmt);
12673 if (fmt_str == NULL)
12674 return;
12676 if (!init_target_chars ())
12677 return;
12679 /* If the format doesn't contain % args or %%, we know its size. */
12680 if (strchr (fmt_str, target_percent) == 0)
12681 len = build_int_cstu (size_type_node, strlen (fmt_str));
12682 /* If the format is "%s" and first ... argument is a string literal,
12683 we know it too. */
12684 else if (fcode == BUILT_IN_SPRINTF_CHK
12685 && strcmp (fmt_str, target_percent_s) == 0)
12687 tree arg;
12689 if (nargs < 5)
12690 return;
12691 arg = CALL_EXPR_ARG (exp, 4);
12692 if (! POINTER_TYPE_P (TREE_TYPE (arg)))
12693 return;
12695 len = c_strlen (arg, 1);
12696 if (!len || ! host_integerp (len, 1))
12697 return;
12699 else
12700 return;
12702 if (! tree_int_cst_lt (len, size))
12703 warning_at (tree_nonartificial_location (exp),
12704 0, "%Kcall to %D will always overflow destination buffer",
12705 exp, get_callee_fndecl (exp));
12708 /* Emit warning if a free is called with address of a variable. */
12710 static void
12711 maybe_emit_free_warning (tree exp)
12713 tree arg = CALL_EXPR_ARG (exp, 0);
12715 STRIP_NOPS (arg);
12716 if (TREE_CODE (arg) != ADDR_EXPR)
12717 return;
12719 arg = get_base_address (TREE_OPERAND (arg, 0));
12720 if (arg == NULL || INDIRECT_REF_P (arg) || TREE_CODE (arg) == MEM_REF)
12721 return;
12723 if (SSA_VAR_P (arg))
12724 warning_at (tree_nonartificial_location (exp), OPT_Wfree_nonheap_object,
12725 "%Kattempt to free a non-heap object %qD", exp, arg);
12726 else
12727 warning_at (tree_nonartificial_location (exp), OPT_Wfree_nonheap_object,
12728 "%Kattempt to free a non-heap object", exp);
12731 /* Fold a call to __builtin_object_size with arguments PTR and OST,
12732 if possible. */
12734 tree
12735 fold_builtin_object_size (tree ptr, tree ost)
12737 unsigned HOST_WIDE_INT bytes;
12738 int object_size_type;
12740 if (!validate_arg (ptr, POINTER_TYPE)
12741 || !validate_arg (ost, INTEGER_TYPE))
12742 return NULL_TREE;
12744 STRIP_NOPS (ost);
12746 if (TREE_CODE (ost) != INTEGER_CST
12747 || tree_int_cst_sgn (ost) < 0
12748 || compare_tree_int (ost, 3) > 0)
12749 return NULL_TREE;
12751 object_size_type = tree_low_cst (ost, 0);
12753 /* __builtin_object_size doesn't evaluate side-effects in its arguments;
12754 if there are any side-effects, it returns (size_t) -1 for types 0 and 1
12755 and (size_t) 0 for types 2 and 3. */
12756 if (TREE_SIDE_EFFECTS (ptr))
12757 return build_int_cst_type (size_type_node, object_size_type < 2 ? -1 : 0);
12759 if (TREE_CODE (ptr) == ADDR_EXPR)
12761 bytes = compute_builtin_object_size (ptr, object_size_type);
12762 if (double_int_fits_to_tree_p (size_type_node,
12763 double_int::from_uhwi (bytes)))
12764 return build_int_cstu (size_type_node, bytes);
12766 else if (TREE_CODE (ptr) == SSA_NAME)
12768 /* If object size is not known yet, delay folding until
12769 later. Maybe subsequent passes will help determining
12770 it. */
12771 bytes = compute_builtin_object_size (ptr, object_size_type);
12772 if (bytes != (unsigned HOST_WIDE_INT) (object_size_type < 2 ? -1 : 0)
12773 && double_int_fits_to_tree_p (size_type_node,
12774 double_int::from_uhwi (bytes)))
12775 return build_int_cstu (size_type_node, bytes);
12778 return NULL_TREE;
12781 /* Fold a call to the __mem{cpy,pcpy,move,set}_chk builtin.
12782 DEST, SRC, LEN, and SIZE are the arguments to the call.
12783 IGNORE is true, if return value can be ignored. FCODE is the BUILT_IN_*
12784 code of the builtin. If MAXLEN is not NULL, it is maximum length
12785 passed as third argument. */
12787 tree
12788 fold_builtin_memory_chk (location_t loc, tree fndecl,
12789 tree dest, tree src, tree len, tree size,
12790 tree maxlen, bool ignore,
12791 enum built_in_function fcode)
12793 tree fn;
12795 if (!validate_arg (dest, POINTER_TYPE)
12796 || !validate_arg (src,
12797 (fcode == BUILT_IN_MEMSET_CHK
12798 ? INTEGER_TYPE : POINTER_TYPE))
12799 || !validate_arg (len, INTEGER_TYPE)
12800 || !validate_arg (size, INTEGER_TYPE))
12801 return NULL_TREE;
12803 /* If SRC and DEST are the same (and not volatile), return DEST
12804 (resp. DEST+LEN for __mempcpy_chk). */
12805 if (fcode != BUILT_IN_MEMSET_CHK && operand_equal_p (src, dest, 0))
12807 if (fcode != BUILT_IN_MEMPCPY_CHK)
12808 return omit_one_operand_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)),
12809 dest, len);
12810 else
12812 tree temp = fold_build_pointer_plus_loc (loc, dest, len);
12813 return fold_convert_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)), temp);
12817 if (! host_integerp (size, 1))
12818 return NULL_TREE;
12820 if (! integer_all_onesp (size))
12822 if (! host_integerp (len, 1))
12824 /* If LEN is not constant, try MAXLEN too.
12825 For MAXLEN only allow optimizing into non-_ocs function
12826 if SIZE is >= MAXLEN, never convert to __ocs_fail (). */
12827 if (maxlen == NULL_TREE || ! host_integerp (maxlen, 1))
12829 if (fcode == BUILT_IN_MEMPCPY_CHK && ignore)
12831 /* (void) __mempcpy_chk () can be optimized into
12832 (void) __memcpy_chk (). */
12833 fn = builtin_decl_explicit (BUILT_IN_MEMCPY_CHK);
12834 if (!fn)
12835 return NULL_TREE;
12837 return build_call_expr_loc (loc, fn, 4, dest, src, len, size);
12839 return NULL_TREE;
12842 else
12843 maxlen = len;
12845 if (tree_int_cst_lt (size, maxlen))
12846 return NULL_TREE;
12849 fn = NULL_TREE;
12850 /* If __builtin_mem{cpy,pcpy,move,set}_chk is used, assume
12851 mem{cpy,pcpy,move,set} is available. */
12852 switch (fcode)
12854 case BUILT_IN_MEMCPY_CHK:
12855 fn = builtin_decl_explicit (BUILT_IN_MEMCPY);
12856 break;
12857 case BUILT_IN_MEMPCPY_CHK:
12858 fn = builtin_decl_explicit (BUILT_IN_MEMPCPY);
12859 break;
12860 case BUILT_IN_MEMMOVE_CHK:
12861 fn = builtin_decl_explicit (BUILT_IN_MEMMOVE);
12862 break;
12863 case BUILT_IN_MEMSET_CHK:
12864 fn = builtin_decl_explicit (BUILT_IN_MEMSET);
12865 break;
12866 default:
12867 break;
12870 if (!fn)
12871 return NULL_TREE;
12873 return build_call_expr_loc (loc, fn, 3, dest, src, len);
12876 /* Fold a call to the __st[rp]cpy_chk builtin.
12877 DEST, SRC, and SIZE are the arguments to the call.
12878 IGNORE is true if return value can be ignored. FCODE is the BUILT_IN_*
12879 code of the builtin. If MAXLEN is not NULL, it is maximum length of
12880 strings passed as second argument. */
12882 tree
12883 fold_builtin_stxcpy_chk (location_t loc, tree fndecl, tree dest,
12884 tree src, tree size,
12885 tree maxlen, bool ignore,
12886 enum built_in_function fcode)
12888 tree len, fn;
12890 if (!validate_arg (dest, POINTER_TYPE)
12891 || !validate_arg (src, POINTER_TYPE)
12892 || !validate_arg (size, INTEGER_TYPE))
12893 return NULL_TREE;
12895 /* If SRC and DEST are the same (and not volatile), return DEST. */
12896 if (fcode == BUILT_IN_STRCPY_CHK && operand_equal_p (src, dest, 0))
12897 return fold_convert_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)), dest);
12899 if (! host_integerp (size, 1))
12900 return NULL_TREE;
12902 if (! integer_all_onesp (size))
12904 len = c_strlen (src, 1);
12905 if (! len || ! host_integerp (len, 1))
12907 /* If LEN is not constant, try MAXLEN too.
12908 For MAXLEN only allow optimizing into non-_ocs function
12909 if SIZE is >= MAXLEN, never convert to __ocs_fail (). */
12910 if (maxlen == NULL_TREE || ! host_integerp (maxlen, 1))
12912 if (fcode == BUILT_IN_STPCPY_CHK)
12914 if (! ignore)
12915 return NULL_TREE;
12917 /* If return value of __stpcpy_chk is ignored,
12918 optimize into __strcpy_chk. */
12919 fn = builtin_decl_explicit (BUILT_IN_STRCPY_CHK);
12920 if (!fn)
12921 return NULL_TREE;
12923 return build_call_expr_loc (loc, fn, 3, dest, src, size);
12926 if (! len || TREE_SIDE_EFFECTS (len))
12927 return NULL_TREE;
12929 /* If c_strlen returned something, but not a constant,
12930 transform __strcpy_chk into __memcpy_chk. */
12931 fn = builtin_decl_explicit (BUILT_IN_MEMCPY_CHK);
12932 if (!fn)
12933 return NULL_TREE;
12935 len = fold_convert_loc (loc, size_type_node, len);
12936 len = size_binop_loc (loc, PLUS_EXPR, len,
12937 build_int_cst (size_type_node, 1));
12938 return fold_convert_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)),
12939 build_call_expr_loc (loc, fn, 4,
12940 dest, src, len, size));
12943 else
12944 maxlen = len;
12946 if (! tree_int_cst_lt (maxlen, size))
12947 return NULL_TREE;
12950 /* If __builtin_st{r,p}cpy_chk is used, assume st{r,p}cpy is available. */
12951 fn = builtin_decl_explicit (fcode == BUILT_IN_STPCPY_CHK
12952 ? BUILT_IN_STPCPY : BUILT_IN_STRCPY);
12953 if (!fn)
12954 return NULL_TREE;
12956 return build_call_expr_loc (loc, fn, 2, dest, src);
12959 /* Fold a call to the __st{r,p}ncpy_chk builtin. DEST, SRC, LEN, and SIZE
12960 are the arguments to the call. If MAXLEN is not NULL, it is maximum
12961 length passed as third argument. IGNORE is true if return value can be
12962 ignored. FCODE is the BUILT_IN_* code of the builtin. */
12964 tree
12965 fold_builtin_stxncpy_chk (location_t loc, tree dest, tree src,
12966 tree len, tree size, tree maxlen, bool ignore,
12967 enum built_in_function fcode)
12969 tree fn;
12971 if (!validate_arg (dest, POINTER_TYPE)
12972 || !validate_arg (src, POINTER_TYPE)
12973 || !validate_arg (len, INTEGER_TYPE)
12974 || !validate_arg (size, INTEGER_TYPE))
12975 return NULL_TREE;
12977 if (fcode == BUILT_IN_STPNCPY_CHK && ignore)
12979 /* If return value of __stpncpy_chk is ignored,
12980 optimize into __strncpy_chk. */
12981 fn = builtin_decl_explicit (BUILT_IN_STRNCPY_CHK);
12982 if (fn)
12983 return build_call_expr_loc (loc, fn, 4, dest, src, len, size);
12986 if (! host_integerp (size, 1))
12987 return NULL_TREE;
12989 if (! integer_all_onesp (size))
12991 if (! host_integerp (len, 1))
12993 /* If LEN is not constant, try MAXLEN too.
12994 For MAXLEN only allow optimizing into non-_ocs function
12995 if SIZE is >= MAXLEN, never convert to __ocs_fail (). */
12996 if (maxlen == NULL_TREE || ! host_integerp (maxlen, 1))
12997 return NULL_TREE;
12999 else
13000 maxlen = len;
13002 if (tree_int_cst_lt (size, maxlen))
13003 return NULL_TREE;
13006 /* If __builtin_st{r,p}ncpy_chk is used, assume st{r,p}ncpy is available. */
13007 fn = builtin_decl_explicit (fcode == BUILT_IN_STPNCPY_CHK
13008 ? BUILT_IN_STPNCPY : BUILT_IN_STRNCPY);
13009 if (!fn)
13010 return NULL_TREE;
13012 return build_call_expr_loc (loc, fn, 3, dest, src, len);
13015 /* Fold a call to the __strcat_chk builtin FNDECL. DEST, SRC, and SIZE
13016 are the arguments to the call. */
13018 static tree
13019 fold_builtin_strcat_chk (location_t loc, tree fndecl, tree dest,
13020 tree src, tree size)
13022 tree fn;
13023 const char *p;
13025 if (!validate_arg (dest, POINTER_TYPE)
13026 || !validate_arg (src, POINTER_TYPE)
13027 || !validate_arg (size, INTEGER_TYPE))
13028 return NULL_TREE;
13030 p = c_getstr (src);
13031 /* If the SRC parameter is "", return DEST. */
13032 if (p && *p == '\0')
13033 return omit_one_operand_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)), dest, src);
13035 if (! host_integerp (size, 1) || ! integer_all_onesp (size))
13036 return NULL_TREE;
13038 /* If __builtin_strcat_chk is used, assume strcat is available. */
13039 fn = builtin_decl_explicit (BUILT_IN_STRCAT);
13040 if (!fn)
13041 return NULL_TREE;
13043 return build_call_expr_loc (loc, fn, 2, dest, src);
13046 /* Fold a call to the __strncat_chk builtin with arguments DEST, SRC,
13047 LEN, and SIZE. */
13049 static tree
13050 fold_builtin_strncat_chk (location_t loc, tree fndecl,
13051 tree dest, tree src, tree len, tree size)
13053 tree fn;
13054 const char *p;
13056 if (!validate_arg (dest, POINTER_TYPE)
13057 || !validate_arg (src, POINTER_TYPE)
13058 || !validate_arg (size, INTEGER_TYPE)
13059 || !validate_arg (size, INTEGER_TYPE))
13060 return NULL_TREE;
13062 p = c_getstr (src);
13063 /* If the SRC parameter is "" or if LEN is 0, return DEST. */
13064 if (p && *p == '\0')
13065 return omit_one_operand_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)), dest, len);
13066 else if (integer_zerop (len))
13067 return omit_one_operand_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)), dest, src);
13069 if (! host_integerp (size, 1))
13070 return NULL_TREE;
13072 if (! integer_all_onesp (size))
13074 tree src_len = c_strlen (src, 1);
13075 if (src_len
13076 && host_integerp (src_len, 1)
13077 && host_integerp (len, 1)
13078 && ! tree_int_cst_lt (len, src_len))
13080 /* If LEN >= strlen (SRC), optimize into __strcat_chk. */
13081 fn = builtin_decl_explicit (BUILT_IN_STRCAT_CHK);
13082 if (!fn)
13083 return NULL_TREE;
13085 return build_call_expr_loc (loc, fn, 3, dest, src, size);
13087 return NULL_TREE;
13090 /* If __builtin_strncat_chk is used, assume strncat is available. */
13091 fn = builtin_decl_explicit (BUILT_IN_STRNCAT);
13092 if (!fn)
13093 return NULL_TREE;
13095 return build_call_expr_loc (loc, fn, 3, dest, src, len);
13098 /* Fold a call EXP to __{,v}sprintf_chk having NARGS passed as ARGS.
13099 Return NULL_TREE if a normal call should be emitted rather than
13100 expanding the function inline. FCODE is either BUILT_IN_SPRINTF_CHK
13101 or BUILT_IN_VSPRINTF_CHK. */
13103 static tree
13104 fold_builtin_sprintf_chk_1 (location_t loc, int nargs, tree *args,
13105 enum built_in_function fcode)
13107 tree dest, size, len, fn, fmt, flag;
13108 const char *fmt_str;
13110 /* Verify the required arguments in the original call. */
13111 if (nargs < 4)
13112 return NULL_TREE;
13113 dest = args[0];
13114 if (!validate_arg (dest, POINTER_TYPE))
13115 return NULL_TREE;
13116 flag = args[1];
13117 if (!validate_arg (flag, INTEGER_TYPE))
13118 return NULL_TREE;
13119 size = args[2];
13120 if (!validate_arg (size, INTEGER_TYPE))
13121 return NULL_TREE;
13122 fmt = args[3];
13123 if (!validate_arg (fmt, POINTER_TYPE))
13124 return NULL_TREE;
13126 if (! host_integerp (size, 1))
13127 return NULL_TREE;
13129 len = NULL_TREE;
13131 if (!init_target_chars ())
13132 return NULL_TREE;
13134 /* Check whether the format is a literal string constant. */
13135 fmt_str = c_getstr (fmt);
13136 if (fmt_str != NULL)
13138 /* If the format doesn't contain % args or %%, we know the size. */
13139 if (strchr (fmt_str, target_percent) == 0)
13141 if (fcode != BUILT_IN_SPRINTF_CHK || nargs == 4)
13142 len = build_int_cstu (size_type_node, strlen (fmt_str));
13144 /* If the format is "%s" and first ... argument is a string literal,
13145 we know the size too. */
13146 else if (fcode == BUILT_IN_SPRINTF_CHK
13147 && strcmp (fmt_str, target_percent_s) == 0)
13149 tree arg;
13151 if (nargs == 5)
13153 arg = args[4];
13154 if (validate_arg (arg, POINTER_TYPE))
13156 len = c_strlen (arg, 1);
13157 if (! len || ! host_integerp (len, 1))
13158 len = NULL_TREE;
13164 if (! integer_all_onesp (size))
13166 if (! len || ! tree_int_cst_lt (len, size))
13167 return NULL_TREE;
13170 /* Only convert __{,v}sprintf_chk to {,v}sprintf if flag is 0
13171 or if format doesn't contain % chars or is "%s". */
13172 if (! integer_zerop (flag))
13174 if (fmt_str == NULL)
13175 return NULL_TREE;
13176 if (strchr (fmt_str, target_percent) != NULL
13177 && strcmp (fmt_str, target_percent_s))
13178 return NULL_TREE;
13181 /* If __builtin_{,v}sprintf_chk is used, assume {,v}sprintf is available. */
13182 fn = builtin_decl_explicit (fcode == BUILT_IN_VSPRINTF_CHK
13183 ? BUILT_IN_VSPRINTF : BUILT_IN_SPRINTF);
13184 if (!fn)
13185 return NULL_TREE;
13187 return rewrite_call_expr_array (loc, nargs, args, 4, fn, 2, dest, fmt);
13190 /* Fold a call EXP to __{,v}sprintf_chk. Return NULL_TREE if
13191 a normal call should be emitted rather than expanding the function
13192 inline. FCODE is either BUILT_IN_SPRINTF_CHK or BUILT_IN_VSPRINTF_CHK. */
13194 static tree
13195 fold_builtin_sprintf_chk (location_t loc, tree exp,
13196 enum built_in_function fcode)
13198 return fold_builtin_sprintf_chk_1 (loc, call_expr_nargs (exp),
13199 CALL_EXPR_ARGP (exp), fcode);
13202 /* Fold a call EXP to {,v}snprintf having NARGS passed as ARGS. Return
13203 NULL_TREE if a normal call should be emitted rather than expanding
13204 the function inline. FCODE is either BUILT_IN_SNPRINTF_CHK or
13205 BUILT_IN_VSNPRINTF_CHK. If MAXLEN is not NULL, it is maximum length
13206 passed as second argument. */
13208 static tree
13209 fold_builtin_snprintf_chk_1 (location_t loc, int nargs, tree *args,
13210 tree maxlen, enum built_in_function fcode)
13212 tree dest, size, len, fn, fmt, flag;
13213 const char *fmt_str;
13215 /* Verify the required arguments in the original call. */
13216 if (nargs < 5)
13217 return NULL_TREE;
13218 dest = args[0];
13219 if (!validate_arg (dest, POINTER_TYPE))
13220 return NULL_TREE;
13221 len = args[1];
13222 if (!validate_arg (len, INTEGER_TYPE))
13223 return NULL_TREE;
13224 flag = args[2];
13225 if (!validate_arg (flag, INTEGER_TYPE))
13226 return NULL_TREE;
13227 size = args[3];
13228 if (!validate_arg (size, INTEGER_TYPE))
13229 return NULL_TREE;
13230 fmt = args[4];
13231 if (!validate_arg (fmt, POINTER_TYPE))
13232 return NULL_TREE;
13234 if (! host_integerp (size, 1))
13235 return NULL_TREE;
13237 if (! integer_all_onesp (size))
13239 if (! host_integerp (len, 1))
13241 /* If LEN is not constant, try MAXLEN too.
13242 For MAXLEN only allow optimizing into non-_ocs function
13243 if SIZE is >= MAXLEN, never convert to __ocs_fail (). */
13244 if (maxlen == NULL_TREE || ! host_integerp (maxlen, 1))
13245 return NULL_TREE;
13247 else
13248 maxlen = len;
13250 if (tree_int_cst_lt (size, maxlen))
13251 return NULL_TREE;
13254 if (!init_target_chars ())
13255 return NULL_TREE;
13257 /* Only convert __{,v}snprintf_chk to {,v}snprintf if flag is 0
13258 or if format doesn't contain % chars or is "%s". */
13259 if (! integer_zerop (flag))
13261 fmt_str = c_getstr (fmt);
13262 if (fmt_str == NULL)
13263 return NULL_TREE;
13264 if (strchr (fmt_str, target_percent) != NULL
13265 && strcmp (fmt_str, target_percent_s))
13266 return NULL_TREE;
13269 /* If __builtin_{,v}snprintf_chk is used, assume {,v}snprintf is
13270 available. */
13271 fn = builtin_decl_explicit (fcode == BUILT_IN_VSNPRINTF_CHK
13272 ? BUILT_IN_VSNPRINTF : BUILT_IN_SNPRINTF);
13273 if (!fn)
13274 return NULL_TREE;
13276 return rewrite_call_expr_array (loc, nargs, args, 5, fn, 3, dest, len, fmt);
13279 /* Fold a call EXP to {,v}snprintf. Return NULL_TREE if
13280 a normal call should be emitted rather than expanding the function
13281 inline. FCODE is either BUILT_IN_SNPRINTF_CHK or
13282 BUILT_IN_VSNPRINTF_CHK. If MAXLEN is not NULL, it is maximum length
13283 passed as second argument. */
13285 tree
13286 fold_builtin_snprintf_chk (location_t loc, tree exp, tree maxlen,
13287 enum built_in_function fcode)
13289 return fold_builtin_snprintf_chk_1 (loc, call_expr_nargs (exp),
13290 CALL_EXPR_ARGP (exp), maxlen, fcode);
13293 /* Fold a call to the {,v}printf{,_unlocked} and __{,v}printf_chk builtins.
13294 FMT and ARG are the arguments to the call; we don't fold cases with
13295 more than 2 arguments, and ARG may be null if this is a 1-argument case.
13297 Return NULL_TREE if no simplification was possible, otherwise return the
13298 simplified form of the call as a tree. FCODE is the BUILT_IN_*
13299 code of the function to be simplified. */
13301 static tree
13302 fold_builtin_printf (location_t loc, tree fndecl, tree fmt,
13303 tree arg, bool ignore,
13304 enum built_in_function fcode)
13306 tree fn_putchar, fn_puts, newarg, call = NULL_TREE;
13307 const char *fmt_str = NULL;
13309 /* If the return value is used, don't do the transformation. */
13310 if (! ignore)
13311 return NULL_TREE;
13313 /* Verify the required arguments in the original call. */
13314 if (!validate_arg (fmt, POINTER_TYPE))
13315 return NULL_TREE;
13317 /* Check whether the format is a literal string constant. */
13318 fmt_str = c_getstr (fmt);
13319 if (fmt_str == NULL)
13320 return NULL_TREE;
13322 if (fcode == BUILT_IN_PRINTF_UNLOCKED)
13324 /* If we're using an unlocked function, assume the other
13325 unlocked functions exist explicitly. */
13326 fn_putchar = builtin_decl_explicit (BUILT_IN_PUTCHAR_UNLOCKED);
13327 fn_puts = builtin_decl_explicit (BUILT_IN_PUTS_UNLOCKED);
13329 else
13331 fn_putchar = builtin_decl_implicit (BUILT_IN_PUTCHAR);
13332 fn_puts = builtin_decl_implicit (BUILT_IN_PUTS);
13335 if (!init_target_chars ())
13336 return NULL_TREE;
13338 if (strcmp (fmt_str, target_percent_s) == 0
13339 || strchr (fmt_str, target_percent) == NULL)
13341 const char *str;
13343 if (strcmp (fmt_str, target_percent_s) == 0)
13345 if (fcode == BUILT_IN_VPRINTF || fcode == BUILT_IN_VPRINTF_CHK)
13346 return NULL_TREE;
13348 if (!arg || !validate_arg (arg, POINTER_TYPE))
13349 return NULL_TREE;
13351 str = c_getstr (arg);
13352 if (str == NULL)
13353 return NULL_TREE;
13355 else
13357 /* The format specifier doesn't contain any '%' characters. */
13358 if (fcode != BUILT_IN_VPRINTF && fcode != BUILT_IN_VPRINTF_CHK
13359 && arg)
13360 return NULL_TREE;
13361 str = fmt_str;
13364 /* If the string was "", printf does nothing. */
13365 if (str[0] == '\0')
13366 return build_int_cst (TREE_TYPE (TREE_TYPE (fndecl)), 0);
13368 /* If the string has length of 1, call putchar. */
13369 if (str[1] == '\0')
13371 /* Given printf("c"), (where c is any one character,)
13372 convert "c"[0] to an int and pass that to the replacement
13373 function. */
13374 newarg = build_int_cst (integer_type_node, str[0]);
13375 if (fn_putchar)
13376 call = build_call_expr_loc (loc, fn_putchar, 1, newarg);
13378 else
13380 /* If the string was "string\n", call puts("string"). */
13381 size_t len = strlen (str);
13382 if ((unsigned char)str[len - 1] == target_newline
13383 && (size_t) (int) len == len
13384 && (int) len > 0)
13386 char *newstr;
13387 tree offset_node, string_cst;
13389 /* Create a NUL-terminated string that's one char shorter
13390 than the original, stripping off the trailing '\n'. */
13391 newarg = build_string_literal (len, str);
13392 string_cst = string_constant (newarg, &offset_node);
13393 gcc_checking_assert (string_cst
13394 && (TREE_STRING_LENGTH (string_cst)
13395 == (int) len)
13396 && integer_zerop (offset_node)
13397 && (unsigned char)
13398 TREE_STRING_POINTER (string_cst)[len - 1]
13399 == target_newline);
13400 /* build_string_literal creates a new STRING_CST,
13401 modify it in place to avoid double copying. */
13402 newstr = CONST_CAST (char *, TREE_STRING_POINTER (string_cst));
13403 newstr[len - 1] = '\0';
13404 if (fn_puts)
13405 call = build_call_expr_loc (loc, fn_puts, 1, newarg);
13407 else
13408 /* We'd like to arrange to call fputs(string,stdout) here,
13409 but we need stdout and don't have a way to get it yet. */
13410 return NULL_TREE;
13414 /* The other optimizations can be done only on the non-va_list variants. */
13415 else if (fcode == BUILT_IN_VPRINTF || fcode == BUILT_IN_VPRINTF_CHK)
13416 return NULL_TREE;
13418 /* If the format specifier was "%s\n", call __builtin_puts(arg). */
13419 else if (strcmp (fmt_str, target_percent_s_newline) == 0)
13421 if (!arg || !validate_arg (arg, POINTER_TYPE))
13422 return NULL_TREE;
13423 if (fn_puts)
13424 call = build_call_expr_loc (loc, fn_puts, 1, arg);
13427 /* If the format specifier was "%c", call __builtin_putchar(arg). */
13428 else if (strcmp (fmt_str, target_percent_c) == 0)
13430 if (!arg || !validate_arg (arg, INTEGER_TYPE))
13431 return NULL_TREE;
13432 if (fn_putchar)
13433 call = build_call_expr_loc (loc, fn_putchar, 1, arg);
13436 if (!call)
13437 return NULL_TREE;
13439 return fold_convert_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)), call);
13442 /* Fold a call to the {,v}fprintf{,_unlocked} and __{,v}printf_chk builtins.
13443 FP, FMT, and ARG are the arguments to the call. We don't fold calls with
13444 more than 3 arguments, and ARG may be null in the 2-argument case.
13446 Return NULL_TREE if no simplification was possible, otherwise return the
13447 simplified form of the call as a tree. FCODE is the BUILT_IN_*
13448 code of the function to be simplified. */
13450 static tree
13451 fold_builtin_fprintf (location_t loc, tree fndecl, tree fp,
13452 tree fmt, tree arg, bool ignore,
13453 enum built_in_function fcode)
13455 tree fn_fputc, fn_fputs, call = NULL_TREE;
13456 const char *fmt_str = NULL;
13458 /* If the return value is used, don't do the transformation. */
13459 if (! ignore)
13460 return NULL_TREE;
13462 /* Verify the required arguments in the original call. */
13463 if (!validate_arg (fp, POINTER_TYPE))
13464 return NULL_TREE;
13465 if (!validate_arg (fmt, POINTER_TYPE))
13466 return NULL_TREE;
13468 /* Check whether the format is a literal string constant. */
13469 fmt_str = c_getstr (fmt);
13470 if (fmt_str == NULL)
13471 return NULL_TREE;
13473 if (fcode == BUILT_IN_FPRINTF_UNLOCKED)
13475 /* If we're using an unlocked function, assume the other
13476 unlocked functions exist explicitly. */
13477 fn_fputc = builtin_decl_explicit (BUILT_IN_FPUTC_UNLOCKED);
13478 fn_fputs = builtin_decl_explicit (BUILT_IN_FPUTS_UNLOCKED);
13480 else
13482 fn_fputc = builtin_decl_implicit (BUILT_IN_FPUTC);
13483 fn_fputs = builtin_decl_implicit (BUILT_IN_FPUTS);
13486 if (!init_target_chars ())
13487 return NULL_TREE;
13489 /* If the format doesn't contain % args or %%, use strcpy. */
13490 if (strchr (fmt_str, target_percent) == NULL)
13492 if (fcode != BUILT_IN_VFPRINTF && fcode != BUILT_IN_VFPRINTF_CHK
13493 && arg)
13494 return NULL_TREE;
13496 /* If the format specifier was "", fprintf does nothing. */
13497 if (fmt_str[0] == '\0')
13499 /* If FP has side-effects, just wait until gimplification is
13500 done. */
13501 if (TREE_SIDE_EFFECTS (fp))
13502 return NULL_TREE;
13504 return build_int_cst (TREE_TYPE (TREE_TYPE (fndecl)), 0);
13507 /* When "string" doesn't contain %, replace all cases of
13508 fprintf (fp, string) with fputs (string, fp). The fputs
13509 builtin will take care of special cases like length == 1. */
13510 if (fn_fputs)
13511 call = build_call_expr_loc (loc, fn_fputs, 2, fmt, fp);
13514 /* The other optimizations can be done only on the non-va_list variants. */
13515 else if (fcode == BUILT_IN_VFPRINTF || fcode == BUILT_IN_VFPRINTF_CHK)
13516 return NULL_TREE;
13518 /* If the format specifier was "%s", call __builtin_fputs (arg, fp). */
13519 else if (strcmp (fmt_str, target_percent_s) == 0)
13521 if (!arg || !validate_arg (arg, POINTER_TYPE))
13522 return NULL_TREE;
13523 if (fn_fputs)
13524 call = build_call_expr_loc (loc, fn_fputs, 2, arg, fp);
13527 /* If the format specifier was "%c", call __builtin_fputc (arg, fp). */
13528 else if (strcmp (fmt_str, target_percent_c) == 0)
13530 if (!arg || !validate_arg (arg, INTEGER_TYPE))
13531 return NULL_TREE;
13532 if (fn_fputc)
13533 call = build_call_expr_loc (loc, fn_fputc, 2, arg, fp);
13536 if (!call)
13537 return NULL_TREE;
13538 return fold_convert_loc (loc, TREE_TYPE (TREE_TYPE (fndecl)), call);
13541 /* Initialize format string characters in the target charset. */
13543 static bool
13544 init_target_chars (void)
13546 static bool init;
13547 if (!init)
13549 target_newline = lang_hooks.to_target_charset ('\n');
13550 target_percent = lang_hooks.to_target_charset ('%');
13551 target_c = lang_hooks.to_target_charset ('c');
13552 target_s = lang_hooks.to_target_charset ('s');
13553 if (target_newline == 0 || target_percent == 0 || target_c == 0
13554 || target_s == 0)
13555 return false;
13557 target_percent_c[0] = target_percent;
13558 target_percent_c[1] = target_c;
13559 target_percent_c[2] = '\0';
13561 target_percent_s[0] = target_percent;
13562 target_percent_s[1] = target_s;
13563 target_percent_s[2] = '\0';
13565 target_percent_s_newline[0] = target_percent;
13566 target_percent_s_newline[1] = target_s;
13567 target_percent_s_newline[2] = target_newline;
13568 target_percent_s_newline[3] = '\0';
13570 init = true;
13572 return true;
13575 /* Helper function for do_mpfr_arg*(). Ensure M is a normal number
13576 and no overflow/underflow occurred. INEXACT is true if M was not
13577 exactly calculated. TYPE is the tree type for the result. This
13578 function assumes that you cleared the MPFR flags and then
13579 calculated M to see if anything subsequently set a flag prior to
13580 entering this function. Return NULL_TREE if any checks fail. */
13582 static tree
13583 do_mpfr_ckconv (mpfr_srcptr m, tree type, int inexact)
13585 /* Proceed iff we get a normal number, i.e. not NaN or Inf and no
13586 overflow/underflow occurred. If -frounding-math, proceed iff the
13587 result of calling FUNC was exact. */
13588 if (mpfr_number_p (m) && !mpfr_overflow_p () && !mpfr_underflow_p ()
13589 && (!flag_rounding_math || !inexact))
13591 REAL_VALUE_TYPE rr;
13593 real_from_mpfr (&rr, m, type, GMP_RNDN);
13594 /* Proceed iff GCC's REAL_VALUE_TYPE can hold the MPFR value,
13595 check for overflow/underflow. If the REAL_VALUE_TYPE is zero
13596 but the mpft_t is not, then we underflowed in the
13597 conversion. */
13598 if (real_isfinite (&rr)
13599 && (rr.cl == rvc_zero) == (mpfr_zero_p (m) != 0))
13601 REAL_VALUE_TYPE rmode;
13603 real_convert (&rmode, TYPE_MODE (type), &rr);
13604 /* Proceed iff the specified mode can hold the value. */
13605 if (real_identical (&rmode, &rr))
13606 return build_real (type, rmode);
13609 return NULL_TREE;
13612 /* Helper function for do_mpc_arg*(). Ensure M is a normal complex
13613 number and no overflow/underflow occurred. INEXACT is true if M
13614 was not exactly calculated. TYPE is the tree type for the result.
13615 This function assumes that you cleared the MPFR flags and then
13616 calculated M to see if anything subsequently set a flag prior to
13617 entering this function. Return NULL_TREE if any checks fail, if
13618 FORCE_CONVERT is true, then bypass the checks. */
13620 static tree
13621 do_mpc_ckconv (mpc_srcptr m, tree type, int inexact, int force_convert)
13623 /* Proceed iff we get a normal number, i.e. not NaN or Inf and no
13624 overflow/underflow occurred. If -frounding-math, proceed iff the
13625 result of calling FUNC was exact. */
13626 if (force_convert
13627 || (mpfr_number_p (mpc_realref (m)) && mpfr_number_p (mpc_imagref (m))
13628 && !mpfr_overflow_p () && !mpfr_underflow_p ()
13629 && (!flag_rounding_math || !inexact)))
13631 REAL_VALUE_TYPE re, im;
13633 real_from_mpfr (&re, mpc_realref (m), TREE_TYPE (type), GMP_RNDN);
13634 real_from_mpfr (&im, mpc_imagref (m), TREE_TYPE (type), GMP_RNDN);
13635 /* Proceed iff GCC's REAL_VALUE_TYPE can hold the MPFR values,
13636 check for overflow/underflow. If the REAL_VALUE_TYPE is zero
13637 but the mpft_t is not, then we underflowed in the
13638 conversion. */
13639 if (force_convert
13640 || (real_isfinite (&re) && real_isfinite (&im)
13641 && (re.cl == rvc_zero) == (mpfr_zero_p (mpc_realref (m)) != 0)
13642 && (im.cl == rvc_zero) == (mpfr_zero_p (mpc_imagref (m)) != 0)))
13644 REAL_VALUE_TYPE re_mode, im_mode;
13646 real_convert (&re_mode, TYPE_MODE (TREE_TYPE (type)), &re);
13647 real_convert (&im_mode, TYPE_MODE (TREE_TYPE (type)), &im);
13648 /* Proceed iff the specified mode can hold the value. */
13649 if (force_convert
13650 || (real_identical (&re_mode, &re)
13651 && real_identical (&im_mode, &im)))
13652 return build_complex (type, build_real (TREE_TYPE (type), re_mode),
13653 build_real (TREE_TYPE (type), im_mode));
13656 return NULL_TREE;
13659 /* If argument ARG is a REAL_CST, call the one-argument mpfr function
13660 FUNC on it and return the resulting value as a tree with type TYPE.
13661 If MIN and/or MAX are not NULL, then the supplied ARG must be
13662 within those bounds. If INCLUSIVE is true, then MIN/MAX are
13663 acceptable values, otherwise they are not. The mpfr precision is
13664 set to the precision of TYPE. We assume that function FUNC returns
13665 zero if the result could be calculated exactly within the requested
13666 precision. */
13668 static tree
13669 do_mpfr_arg1 (tree arg, tree type, int (*func)(mpfr_ptr, mpfr_srcptr, mp_rnd_t),
13670 const REAL_VALUE_TYPE *min, const REAL_VALUE_TYPE *max,
13671 bool inclusive)
13673 tree result = NULL_TREE;
13675 STRIP_NOPS (arg);
13677 /* To proceed, MPFR must exactly represent the target floating point
13678 format, which only happens when the target base equals two. */
13679 if (REAL_MODE_FORMAT (TYPE_MODE (type))->b == 2
13680 && TREE_CODE (arg) == REAL_CST && !TREE_OVERFLOW (arg))
13682 const REAL_VALUE_TYPE *const ra = &TREE_REAL_CST (arg);
13684 if (real_isfinite (ra)
13685 && (!min || real_compare (inclusive ? GE_EXPR: GT_EXPR , ra, min))
13686 && (!max || real_compare (inclusive ? LE_EXPR: LT_EXPR , ra, max)))
13688 const struct real_format *fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
13689 const int prec = fmt->p;
13690 const mp_rnd_t rnd = fmt->round_towards_zero? GMP_RNDZ : GMP_RNDN;
13691 int inexact;
13692 mpfr_t m;
13694 mpfr_init2 (m, prec);
13695 mpfr_from_real (m, ra, GMP_RNDN);
13696 mpfr_clear_flags ();
13697 inexact = func (m, m, rnd);
13698 result = do_mpfr_ckconv (m, type, inexact);
13699 mpfr_clear (m);
13703 return result;
13706 /* If argument ARG is a REAL_CST, call the two-argument mpfr function
13707 FUNC on it and return the resulting value as a tree with type TYPE.
13708 The mpfr precision is set to the precision of TYPE. We assume that
13709 function FUNC returns zero if the result could be calculated
13710 exactly within the requested precision. */
13712 static tree
13713 do_mpfr_arg2 (tree arg1, tree arg2, tree type,
13714 int (*func)(mpfr_ptr, mpfr_srcptr, mpfr_srcptr, mp_rnd_t))
13716 tree result = NULL_TREE;
13718 STRIP_NOPS (arg1);
13719 STRIP_NOPS (arg2);
13721 /* To proceed, MPFR must exactly represent the target floating point
13722 format, which only happens when the target base equals two. */
13723 if (REAL_MODE_FORMAT (TYPE_MODE (type))->b == 2
13724 && TREE_CODE (arg1) == REAL_CST && !TREE_OVERFLOW (arg1)
13725 && TREE_CODE (arg2) == REAL_CST && !TREE_OVERFLOW (arg2))
13727 const REAL_VALUE_TYPE *const ra1 = &TREE_REAL_CST (arg1);
13728 const REAL_VALUE_TYPE *const ra2 = &TREE_REAL_CST (arg2);
13730 if (real_isfinite (ra1) && real_isfinite (ra2))
13732 const struct real_format *fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
13733 const int prec = fmt->p;
13734 const mp_rnd_t rnd = fmt->round_towards_zero? GMP_RNDZ : GMP_RNDN;
13735 int inexact;
13736 mpfr_t m1, m2;
13738 mpfr_inits2 (prec, m1, m2, NULL);
13739 mpfr_from_real (m1, ra1, GMP_RNDN);
13740 mpfr_from_real (m2, ra2, GMP_RNDN);
13741 mpfr_clear_flags ();
13742 inexact = func (m1, m1, m2, rnd);
13743 result = do_mpfr_ckconv (m1, type, inexact);
13744 mpfr_clears (m1, m2, NULL);
13748 return result;
13751 /* If argument ARG is a REAL_CST, call the three-argument mpfr function
13752 FUNC on it and return the resulting value as a tree with type TYPE.
13753 The mpfr precision is set to the precision of TYPE. We assume that
13754 function FUNC returns zero if the result could be calculated
13755 exactly within the requested precision. */
13757 static tree
13758 do_mpfr_arg3 (tree arg1, tree arg2, tree arg3, tree type,
13759 int (*func)(mpfr_ptr, mpfr_srcptr, mpfr_srcptr, mpfr_srcptr, mp_rnd_t))
13761 tree result = NULL_TREE;
13763 STRIP_NOPS (arg1);
13764 STRIP_NOPS (arg2);
13765 STRIP_NOPS (arg3);
13767 /* To proceed, MPFR must exactly represent the target floating point
13768 format, which only happens when the target base equals two. */
13769 if (REAL_MODE_FORMAT (TYPE_MODE (type))->b == 2
13770 && TREE_CODE (arg1) == REAL_CST && !TREE_OVERFLOW (arg1)
13771 && TREE_CODE (arg2) == REAL_CST && !TREE_OVERFLOW (arg2)
13772 && TREE_CODE (arg3) == REAL_CST && !TREE_OVERFLOW (arg3))
13774 const REAL_VALUE_TYPE *const ra1 = &TREE_REAL_CST (arg1);
13775 const REAL_VALUE_TYPE *const ra2 = &TREE_REAL_CST (arg2);
13776 const REAL_VALUE_TYPE *const ra3 = &TREE_REAL_CST (arg3);
13778 if (real_isfinite (ra1) && real_isfinite (ra2) && real_isfinite (ra3))
13780 const struct real_format *fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
13781 const int prec = fmt->p;
13782 const mp_rnd_t rnd = fmt->round_towards_zero? GMP_RNDZ : GMP_RNDN;
13783 int inexact;
13784 mpfr_t m1, m2, m3;
13786 mpfr_inits2 (prec, m1, m2, m3, NULL);
13787 mpfr_from_real (m1, ra1, GMP_RNDN);
13788 mpfr_from_real (m2, ra2, GMP_RNDN);
13789 mpfr_from_real (m3, ra3, GMP_RNDN);
13790 mpfr_clear_flags ();
13791 inexact = func (m1, m1, m2, m3, rnd);
13792 result = do_mpfr_ckconv (m1, type, inexact);
13793 mpfr_clears (m1, m2, m3, NULL);
13797 return result;
13800 /* If argument ARG is a REAL_CST, call mpfr_sin_cos() on it and set
13801 the pointers *(ARG_SINP) and *(ARG_COSP) to the resulting values.
13802 If ARG_SINP and ARG_COSP are NULL then the result is returned
13803 as a complex value.
13804 The type is taken from the type of ARG and is used for setting the
13805 precision of the calculation and results. */
13807 static tree
13808 do_mpfr_sincos (tree arg, tree arg_sinp, tree arg_cosp)
13810 tree const type = TREE_TYPE (arg);
13811 tree result = NULL_TREE;
13813 STRIP_NOPS (arg);
13815 /* To proceed, MPFR must exactly represent the target floating point
13816 format, which only happens when the target base equals two. */
13817 if (REAL_MODE_FORMAT (TYPE_MODE (type))->b == 2
13818 && TREE_CODE (arg) == REAL_CST
13819 && !TREE_OVERFLOW (arg))
13821 const REAL_VALUE_TYPE *const ra = &TREE_REAL_CST (arg);
13823 if (real_isfinite (ra))
13825 const struct real_format *fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
13826 const int prec = fmt->p;
13827 const mp_rnd_t rnd = fmt->round_towards_zero? GMP_RNDZ : GMP_RNDN;
13828 tree result_s, result_c;
13829 int inexact;
13830 mpfr_t m, ms, mc;
13832 mpfr_inits2 (prec, m, ms, mc, NULL);
13833 mpfr_from_real (m, ra, GMP_RNDN);
13834 mpfr_clear_flags ();
13835 inexact = mpfr_sin_cos (ms, mc, m, rnd);
13836 result_s = do_mpfr_ckconv (ms, type, inexact);
13837 result_c = do_mpfr_ckconv (mc, type, inexact);
13838 mpfr_clears (m, ms, mc, NULL);
13839 if (result_s && result_c)
13841 /* If we are to return in a complex value do so. */
13842 if (!arg_sinp && !arg_cosp)
13843 return build_complex (build_complex_type (type),
13844 result_c, result_s);
13846 /* Dereference the sin/cos pointer arguments. */
13847 arg_sinp = build_fold_indirect_ref (arg_sinp);
13848 arg_cosp = build_fold_indirect_ref (arg_cosp);
13849 /* Proceed if valid pointer type were passed in. */
13850 if (TYPE_MAIN_VARIANT (TREE_TYPE (arg_sinp)) == TYPE_MAIN_VARIANT (type)
13851 && TYPE_MAIN_VARIANT (TREE_TYPE (arg_cosp)) == TYPE_MAIN_VARIANT (type))
13853 /* Set the values. */
13854 result_s = fold_build2 (MODIFY_EXPR, type, arg_sinp,
13855 result_s);
13856 TREE_SIDE_EFFECTS (result_s) = 1;
13857 result_c = fold_build2 (MODIFY_EXPR, type, arg_cosp,
13858 result_c);
13859 TREE_SIDE_EFFECTS (result_c) = 1;
13860 /* Combine the assignments into a compound expr. */
13861 result = non_lvalue (fold_build2 (COMPOUND_EXPR, type,
13862 result_s, result_c));
13867 return result;
13870 /* If argument ARG1 is an INTEGER_CST and ARG2 is a REAL_CST, call the
13871 two-argument mpfr order N Bessel function FUNC on them and return
13872 the resulting value as a tree with type TYPE. The mpfr precision
13873 is set to the precision of TYPE. We assume that function FUNC
13874 returns zero if the result could be calculated exactly within the
13875 requested precision. */
13876 static tree
13877 do_mpfr_bessel_n (tree arg1, tree arg2, tree type,
13878 int (*func)(mpfr_ptr, long, mpfr_srcptr, mp_rnd_t),
13879 const REAL_VALUE_TYPE *min, bool inclusive)
13881 tree result = NULL_TREE;
13883 STRIP_NOPS (arg1);
13884 STRIP_NOPS (arg2);
13886 /* To proceed, MPFR must exactly represent the target floating point
13887 format, which only happens when the target base equals two. */
13888 if (REAL_MODE_FORMAT (TYPE_MODE (type))->b == 2
13889 && host_integerp (arg1, 0)
13890 && TREE_CODE (arg2) == REAL_CST && !TREE_OVERFLOW (arg2))
13892 const HOST_WIDE_INT n = tree_low_cst(arg1, 0);
13893 const REAL_VALUE_TYPE *const ra = &TREE_REAL_CST (arg2);
13895 if (n == (long)n
13896 && real_isfinite (ra)
13897 && (!min || real_compare (inclusive ? GE_EXPR: GT_EXPR , ra, min)))
13899 const struct real_format *fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
13900 const int prec = fmt->p;
13901 const mp_rnd_t rnd = fmt->round_towards_zero? GMP_RNDZ : GMP_RNDN;
13902 int inexact;
13903 mpfr_t m;
13905 mpfr_init2 (m, prec);
13906 mpfr_from_real (m, ra, GMP_RNDN);
13907 mpfr_clear_flags ();
13908 inexact = func (m, n, m, rnd);
13909 result = do_mpfr_ckconv (m, type, inexact);
13910 mpfr_clear (m);
13914 return result;
13917 /* If arguments ARG0 and ARG1 are REAL_CSTs, call mpfr_remquo() to set
13918 the pointer *(ARG_QUO) and return the result. The type is taken
13919 from the type of ARG0 and is used for setting the precision of the
13920 calculation and results. */
13922 static tree
13923 do_mpfr_remquo (tree arg0, tree arg1, tree arg_quo)
13925 tree const type = TREE_TYPE (arg0);
13926 tree result = NULL_TREE;
13928 STRIP_NOPS (arg0);
13929 STRIP_NOPS (arg1);
13931 /* To proceed, MPFR must exactly represent the target floating point
13932 format, which only happens when the target base equals two. */
13933 if (REAL_MODE_FORMAT (TYPE_MODE (type))->b == 2
13934 && TREE_CODE (arg0) == REAL_CST && !TREE_OVERFLOW (arg0)
13935 && TREE_CODE (arg1) == REAL_CST && !TREE_OVERFLOW (arg1))
13937 const REAL_VALUE_TYPE *const ra0 = TREE_REAL_CST_PTR (arg0);
13938 const REAL_VALUE_TYPE *const ra1 = TREE_REAL_CST_PTR (arg1);
13940 if (real_isfinite (ra0) && real_isfinite (ra1))
13942 const struct real_format *fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
13943 const int prec = fmt->p;
13944 const mp_rnd_t rnd = fmt->round_towards_zero? GMP_RNDZ : GMP_RNDN;
13945 tree result_rem;
13946 long integer_quo;
13947 mpfr_t m0, m1;
13949 mpfr_inits2 (prec, m0, m1, NULL);
13950 mpfr_from_real (m0, ra0, GMP_RNDN);
13951 mpfr_from_real (m1, ra1, GMP_RNDN);
13952 mpfr_clear_flags ();
13953 mpfr_remquo (m0, &integer_quo, m0, m1, rnd);
13954 /* Remquo is independent of the rounding mode, so pass
13955 inexact=0 to do_mpfr_ckconv(). */
13956 result_rem = do_mpfr_ckconv (m0, type, /*inexact=*/ 0);
13957 mpfr_clears (m0, m1, NULL);
13958 if (result_rem)
13960 /* MPFR calculates quo in the host's long so it may
13961 return more bits in quo than the target int can hold
13962 if sizeof(host long) > sizeof(target int). This can
13963 happen even for native compilers in LP64 mode. In
13964 these cases, modulo the quo value with the largest
13965 number that the target int can hold while leaving one
13966 bit for the sign. */
13967 if (sizeof (integer_quo) * CHAR_BIT > INT_TYPE_SIZE)
13968 integer_quo %= (long)(1UL << (INT_TYPE_SIZE - 1));
13970 /* Dereference the quo pointer argument. */
13971 arg_quo = build_fold_indirect_ref (arg_quo);
13972 /* Proceed iff a valid pointer type was passed in. */
13973 if (TYPE_MAIN_VARIANT (TREE_TYPE (arg_quo)) == integer_type_node)
13975 /* Set the value. */
13976 tree result_quo
13977 = fold_build2 (MODIFY_EXPR, TREE_TYPE (arg_quo), arg_quo,
13978 build_int_cst (TREE_TYPE (arg_quo),
13979 integer_quo));
13980 TREE_SIDE_EFFECTS (result_quo) = 1;
13981 /* Combine the quo assignment with the rem. */
13982 result = non_lvalue (fold_build2 (COMPOUND_EXPR, type,
13983 result_quo, result_rem));
13988 return result;
13991 /* If ARG is a REAL_CST, call mpfr_lgamma() on it and return the
13992 resulting value as a tree with type TYPE. The mpfr precision is
13993 set to the precision of TYPE. We assume that this mpfr function
13994 returns zero if the result could be calculated exactly within the
13995 requested precision. In addition, the integer pointer represented
13996 by ARG_SG will be dereferenced and set to the appropriate signgam
13997 (-1,1) value. */
13999 static tree
14000 do_mpfr_lgamma_r (tree arg, tree arg_sg, tree type)
14002 tree result = NULL_TREE;
14004 STRIP_NOPS (arg);
14006 /* To proceed, MPFR must exactly represent the target floating point
14007 format, which only happens when the target base equals two. Also
14008 verify ARG is a constant and that ARG_SG is an int pointer. */
14009 if (REAL_MODE_FORMAT (TYPE_MODE (type))->b == 2
14010 && TREE_CODE (arg) == REAL_CST && !TREE_OVERFLOW (arg)
14011 && TREE_CODE (TREE_TYPE (arg_sg)) == POINTER_TYPE
14012 && TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (arg_sg))) == integer_type_node)
14014 const REAL_VALUE_TYPE *const ra = TREE_REAL_CST_PTR (arg);
14016 /* In addition to NaN and Inf, the argument cannot be zero or a
14017 negative integer. */
14018 if (real_isfinite (ra)
14019 && ra->cl != rvc_zero
14020 && !(real_isneg(ra) && real_isinteger(ra, TYPE_MODE (type))))
14022 const struct real_format *fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
14023 const int prec = fmt->p;
14024 const mp_rnd_t rnd = fmt->round_towards_zero? GMP_RNDZ : GMP_RNDN;
14025 int inexact, sg;
14026 mpfr_t m;
14027 tree result_lg;
14029 mpfr_init2 (m, prec);
14030 mpfr_from_real (m, ra, GMP_RNDN);
14031 mpfr_clear_flags ();
14032 inexact = mpfr_lgamma (m, &sg, m, rnd);
14033 result_lg = do_mpfr_ckconv (m, type, inexact);
14034 mpfr_clear (m);
14035 if (result_lg)
14037 tree result_sg;
14039 /* Dereference the arg_sg pointer argument. */
14040 arg_sg = build_fold_indirect_ref (arg_sg);
14041 /* Assign the signgam value into *arg_sg. */
14042 result_sg = fold_build2 (MODIFY_EXPR,
14043 TREE_TYPE (arg_sg), arg_sg,
14044 build_int_cst (TREE_TYPE (arg_sg), sg));
14045 TREE_SIDE_EFFECTS (result_sg) = 1;
14046 /* Combine the signgam assignment with the lgamma result. */
14047 result = non_lvalue (fold_build2 (COMPOUND_EXPR, type,
14048 result_sg, result_lg));
14053 return result;
14056 /* If argument ARG is a COMPLEX_CST, call the one-argument mpc
14057 function FUNC on it and return the resulting value as a tree with
14058 type TYPE. The mpfr precision is set to the precision of TYPE. We
14059 assume that function FUNC returns zero if the result could be
14060 calculated exactly within the requested precision. */
14062 static tree
14063 do_mpc_arg1 (tree arg, tree type, int (*func)(mpc_ptr, mpc_srcptr, mpc_rnd_t))
14065 tree result = NULL_TREE;
14067 STRIP_NOPS (arg);
14069 /* To proceed, MPFR must exactly represent the target floating point
14070 format, which only happens when the target base equals two. */
14071 if (TREE_CODE (arg) == COMPLEX_CST && !TREE_OVERFLOW (arg)
14072 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg))) == REAL_TYPE
14073 && REAL_MODE_FORMAT (TYPE_MODE (TREE_TYPE (TREE_TYPE (arg))))->b == 2)
14075 const REAL_VALUE_TYPE *const re = TREE_REAL_CST_PTR (TREE_REALPART (arg));
14076 const REAL_VALUE_TYPE *const im = TREE_REAL_CST_PTR (TREE_IMAGPART (arg));
14078 if (real_isfinite (re) && real_isfinite (im))
14080 const struct real_format *const fmt =
14081 REAL_MODE_FORMAT (TYPE_MODE (TREE_TYPE (type)));
14082 const int prec = fmt->p;
14083 const mp_rnd_t rnd = fmt->round_towards_zero ? GMP_RNDZ : GMP_RNDN;
14084 const mpc_rnd_t crnd = fmt->round_towards_zero ? MPC_RNDZZ : MPC_RNDNN;
14085 int inexact;
14086 mpc_t m;
14088 mpc_init2 (m, prec);
14089 mpfr_from_real (mpc_realref(m), re, rnd);
14090 mpfr_from_real (mpc_imagref(m), im, rnd);
14091 mpfr_clear_flags ();
14092 inexact = func (m, m, crnd);
14093 result = do_mpc_ckconv (m, type, inexact, /*force_convert=*/ 0);
14094 mpc_clear (m);
14098 return result;
14101 /* If arguments ARG0 and ARG1 are a COMPLEX_CST, call the two-argument
14102 mpc function FUNC on it and return the resulting value as a tree
14103 with type TYPE. The mpfr precision is set to the precision of
14104 TYPE. We assume that function FUNC returns zero if the result
14105 could be calculated exactly within the requested precision. If
14106 DO_NONFINITE is true, then fold expressions containing Inf or NaN
14107 in the arguments and/or results. */
14109 tree
14110 do_mpc_arg2 (tree arg0, tree arg1, tree type, int do_nonfinite,
14111 int (*func)(mpc_ptr, mpc_srcptr, mpc_srcptr, mpc_rnd_t))
14113 tree result = NULL_TREE;
14115 STRIP_NOPS (arg0);
14116 STRIP_NOPS (arg1);
14118 /* To proceed, MPFR must exactly represent the target floating point
14119 format, which only happens when the target base equals two. */
14120 if (TREE_CODE (arg0) == COMPLEX_CST && !TREE_OVERFLOW (arg0)
14121 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE
14122 && TREE_CODE (arg1) == COMPLEX_CST && !TREE_OVERFLOW (arg1)
14123 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg1))) == REAL_TYPE
14124 && REAL_MODE_FORMAT (TYPE_MODE (TREE_TYPE (TREE_TYPE (arg0))))->b == 2)
14126 const REAL_VALUE_TYPE *const re0 = TREE_REAL_CST_PTR (TREE_REALPART (arg0));
14127 const REAL_VALUE_TYPE *const im0 = TREE_REAL_CST_PTR (TREE_IMAGPART (arg0));
14128 const REAL_VALUE_TYPE *const re1 = TREE_REAL_CST_PTR (TREE_REALPART (arg1));
14129 const REAL_VALUE_TYPE *const im1 = TREE_REAL_CST_PTR (TREE_IMAGPART (arg1));
14131 if (do_nonfinite
14132 || (real_isfinite (re0) && real_isfinite (im0)
14133 && real_isfinite (re1) && real_isfinite (im1)))
14135 const struct real_format *const fmt =
14136 REAL_MODE_FORMAT (TYPE_MODE (TREE_TYPE (type)));
14137 const int prec = fmt->p;
14138 const mp_rnd_t rnd = fmt->round_towards_zero ? GMP_RNDZ : GMP_RNDN;
14139 const mpc_rnd_t crnd = fmt->round_towards_zero ? MPC_RNDZZ : MPC_RNDNN;
14140 int inexact;
14141 mpc_t m0, m1;
14143 mpc_init2 (m0, prec);
14144 mpc_init2 (m1, prec);
14145 mpfr_from_real (mpc_realref(m0), re0, rnd);
14146 mpfr_from_real (mpc_imagref(m0), im0, rnd);
14147 mpfr_from_real (mpc_realref(m1), re1, rnd);
14148 mpfr_from_real (mpc_imagref(m1), im1, rnd);
14149 mpfr_clear_flags ();
14150 inexact = func (m0, m0, m1, crnd);
14151 result = do_mpc_ckconv (m0, type, inexact, do_nonfinite);
14152 mpc_clear (m0);
14153 mpc_clear (m1);
14157 return result;
14160 /* Fold a call STMT to __{,v}sprintf_chk. Return NULL_TREE if
14161 a normal call should be emitted rather than expanding the function
14162 inline. FCODE is either BUILT_IN_SPRINTF_CHK or BUILT_IN_VSPRINTF_CHK. */
14164 static tree
14165 gimple_fold_builtin_sprintf_chk (gimple stmt, enum built_in_function fcode)
14167 int nargs = gimple_call_num_args (stmt);
14169 return fold_builtin_sprintf_chk_1 (gimple_location (stmt), nargs,
14170 (nargs > 0
14171 ? gimple_call_arg_ptr (stmt, 0)
14172 : &error_mark_node), fcode);
14175 /* Fold a call STMT to {,v}snprintf. Return NULL_TREE if
14176 a normal call should be emitted rather than expanding the function
14177 inline. FCODE is either BUILT_IN_SNPRINTF_CHK or
14178 BUILT_IN_VSNPRINTF_CHK. If MAXLEN is not NULL, it is maximum length
14179 passed as second argument. */
14181 tree
14182 gimple_fold_builtin_snprintf_chk (gimple stmt, tree maxlen,
14183 enum built_in_function fcode)
14185 int nargs = gimple_call_num_args (stmt);
14187 return fold_builtin_snprintf_chk_1 (gimple_location (stmt), nargs,
14188 (nargs > 0
14189 ? gimple_call_arg_ptr (stmt, 0)
14190 : &error_mark_node), maxlen, fcode);
14193 /* Builtins with folding operations that operate on "..." arguments
14194 need special handling; we need to store the arguments in a convenient
14195 data structure before attempting any folding. Fortunately there are
14196 only a few builtins that fall into this category. FNDECL is the
14197 function, EXP is the CALL_EXPR for the call, and IGNORE is true if the
14198 result of the function call is ignored. */
14200 static tree
14201 gimple_fold_builtin_varargs (tree fndecl, gimple stmt,
14202 bool ignore ATTRIBUTE_UNUSED)
14204 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
14205 tree ret = NULL_TREE;
14207 switch (fcode)
14209 case BUILT_IN_SPRINTF_CHK:
14210 case BUILT_IN_VSPRINTF_CHK:
14211 ret = gimple_fold_builtin_sprintf_chk (stmt, fcode);
14212 break;
14214 case BUILT_IN_SNPRINTF_CHK:
14215 case BUILT_IN_VSNPRINTF_CHK:
14216 ret = gimple_fold_builtin_snprintf_chk (stmt, NULL_TREE, fcode);
14218 default:
14219 break;
14221 if (ret)
14223 ret = build1 (NOP_EXPR, TREE_TYPE (ret), ret);
14224 TREE_NO_WARNING (ret) = 1;
14225 return ret;
14227 return NULL_TREE;
14230 /* A wrapper function for builtin folding that prevents warnings for
14231 "statement without effect" and the like, caused by removing the
14232 call node earlier than the warning is generated. */
14234 tree
14235 fold_call_stmt (gimple stmt, bool ignore)
14237 tree ret = NULL_TREE;
14238 tree fndecl = gimple_call_fndecl (stmt);
14239 location_t loc = gimple_location (stmt);
14240 if (fndecl
14241 && TREE_CODE (fndecl) == FUNCTION_DECL
14242 && DECL_BUILT_IN (fndecl)
14243 && !gimple_call_va_arg_pack_p (stmt))
14245 int nargs = gimple_call_num_args (stmt);
14246 tree *args = (nargs > 0
14247 ? gimple_call_arg_ptr (stmt, 0)
14248 : &error_mark_node);
14250 if (avoid_folding_inline_builtin (fndecl))
14251 return NULL_TREE;
14252 if (DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
14254 return targetm.fold_builtin (fndecl, nargs, args, ignore);
14256 else
14258 if (nargs <= MAX_ARGS_TO_FOLD_BUILTIN)
14259 ret = fold_builtin_n (loc, fndecl, args, nargs, ignore);
14260 if (!ret)
14261 ret = gimple_fold_builtin_varargs (fndecl, stmt, ignore);
14262 if (ret)
14264 /* Propagate location information from original call to
14265 expansion of builtin. Otherwise things like
14266 maybe_emit_chk_warning, that operate on the expansion
14267 of a builtin, will use the wrong location information. */
14268 if (gimple_has_location (stmt))
14270 tree realret = ret;
14271 if (TREE_CODE (ret) == NOP_EXPR)
14272 realret = TREE_OPERAND (ret, 0);
14273 if (CAN_HAVE_LOCATION_P (realret)
14274 && !EXPR_HAS_LOCATION (realret))
14275 SET_EXPR_LOCATION (realret, loc);
14276 return realret;
14278 return ret;
14282 return NULL_TREE;
14285 /* Look up the function in builtin_decl that corresponds to DECL
14286 and set ASMSPEC as its user assembler name. DECL must be a
14287 function decl that declares a builtin. */
14289 void
14290 set_builtin_user_assembler_name (tree decl, const char *asmspec)
14292 tree builtin;
14293 gcc_assert (TREE_CODE (decl) == FUNCTION_DECL
14294 && DECL_BUILT_IN_CLASS (decl) == BUILT_IN_NORMAL
14295 && asmspec != 0);
14297 builtin = builtin_decl_explicit (DECL_FUNCTION_CODE (decl));
14298 set_user_assembler_name (builtin, asmspec);
14299 switch (DECL_FUNCTION_CODE (decl))
14301 case BUILT_IN_MEMCPY:
14302 init_block_move_fn (asmspec);
14303 memcpy_libfunc = set_user_assembler_libfunc ("memcpy", asmspec);
14304 break;
14305 case BUILT_IN_MEMSET:
14306 init_block_clear_fn (asmspec);
14307 memset_libfunc = set_user_assembler_libfunc ("memset", asmspec);
14308 break;
14309 case BUILT_IN_MEMMOVE:
14310 memmove_libfunc = set_user_assembler_libfunc ("memmove", asmspec);
14311 break;
14312 case BUILT_IN_MEMCMP:
14313 memcmp_libfunc = set_user_assembler_libfunc ("memcmp", asmspec);
14314 break;
14315 case BUILT_IN_ABORT:
14316 abort_libfunc = set_user_assembler_libfunc ("abort", asmspec);
14317 break;
14318 case BUILT_IN_FFS:
14319 if (INT_TYPE_SIZE < BITS_PER_WORD)
14321 set_user_assembler_libfunc ("ffs", asmspec);
14322 set_optab_libfunc (ffs_optab, mode_for_size (INT_TYPE_SIZE,
14323 MODE_INT, 0), "ffs");
14325 break;
14326 default:
14327 break;
14331 /* Return true if DECL is a builtin that expands to a constant or similarly
14332 simple code. */
14333 bool
14334 is_simple_builtin (tree decl)
14336 if (decl && DECL_BUILT_IN_CLASS (decl) == BUILT_IN_NORMAL)
14337 switch (DECL_FUNCTION_CODE (decl))
14339 /* Builtins that expand to constants. */
14340 case BUILT_IN_CONSTANT_P:
14341 case BUILT_IN_EXPECT:
14342 case BUILT_IN_OBJECT_SIZE:
14343 case BUILT_IN_UNREACHABLE:
14344 /* Simple register moves or loads from stack. */
14345 case BUILT_IN_ASSUME_ALIGNED:
14346 case BUILT_IN_RETURN_ADDRESS:
14347 case BUILT_IN_EXTRACT_RETURN_ADDR:
14348 case BUILT_IN_FROB_RETURN_ADDR:
14349 case BUILT_IN_RETURN:
14350 case BUILT_IN_AGGREGATE_INCOMING_ADDRESS:
14351 case BUILT_IN_FRAME_ADDRESS:
14352 case BUILT_IN_VA_END:
14353 case BUILT_IN_STACK_SAVE:
14354 case BUILT_IN_STACK_RESTORE:
14355 /* Exception state returns or moves registers around. */
14356 case BUILT_IN_EH_FILTER:
14357 case BUILT_IN_EH_POINTER:
14358 case BUILT_IN_EH_COPY_VALUES:
14359 return true;
14361 default:
14362 return false;
14365 return false;
14368 /* Return true if DECL is a builtin that is not expensive, i.e., they are
14369 most probably expanded inline into reasonably simple code. This is a
14370 superset of is_simple_builtin. */
14371 bool
14372 is_inexpensive_builtin (tree decl)
14374 if (!decl)
14375 return false;
14376 else if (DECL_BUILT_IN_CLASS (decl) == BUILT_IN_MD)
14377 return true;
14378 else if (DECL_BUILT_IN_CLASS (decl) == BUILT_IN_NORMAL)
14379 switch (DECL_FUNCTION_CODE (decl))
14381 case BUILT_IN_ABS:
14382 case BUILT_IN_ALLOCA:
14383 case BUILT_IN_ALLOCA_WITH_ALIGN:
14384 case BUILT_IN_BSWAP16:
14385 case BUILT_IN_BSWAP32:
14386 case BUILT_IN_BSWAP64:
14387 case BUILT_IN_CLZ:
14388 case BUILT_IN_CLZIMAX:
14389 case BUILT_IN_CLZL:
14390 case BUILT_IN_CLZLL:
14391 case BUILT_IN_CTZ:
14392 case BUILT_IN_CTZIMAX:
14393 case BUILT_IN_CTZL:
14394 case BUILT_IN_CTZLL:
14395 case BUILT_IN_FFS:
14396 case BUILT_IN_FFSIMAX:
14397 case BUILT_IN_FFSL:
14398 case BUILT_IN_FFSLL:
14399 case BUILT_IN_IMAXABS:
14400 case BUILT_IN_FINITE:
14401 case BUILT_IN_FINITEF:
14402 case BUILT_IN_FINITEL:
14403 case BUILT_IN_FINITED32:
14404 case BUILT_IN_FINITED64:
14405 case BUILT_IN_FINITED128:
14406 case BUILT_IN_FPCLASSIFY:
14407 case BUILT_IN_ISFINITE:
14408 case BUILT_IN_ISINF_SIGN:
14409 case BUILT_IN_ISINF:
14410 case BUILT_IN_ISINFF:
14411 case BUILT_IN_ISINFL:
14412 case BUILT_IN_ISINFD32:
14413 case BUILT_IN_ISINFD64:
14414 case BUILT_IN_ISINFD128:
14415 case BUILT_IN_ISNAN:
14416 case BUILT_IN_ISNANF:
14417 case BUILT_IN_ISNANL:
14418 case BUILT_IN_ISNAND32:
14419 case BUILT_IN_ISNAND64:
14420 case BUILT_IN_ISNAND128:
14421 case BUILT_IN_ISNORMAL:
14422 case BUILT_IN_ISGREATER:
14423 case BUILT_IN_ISGREATEREQUAL:
14424 case BUILT_IN_ISLESS:
14425 case BUILT_IN_ISLESSEQUAL:
14426 case BUILT_IN_ISLESSGREATER:
14427 case BUILT_IN_ISUNORDERED:
14428 case BUILT_IN_VA_ARG_PACK:
14429 case BUILT_IN_VA_ARG_PACK_LEN:
14430 case BUILT_IN_VA_COPY:
14431 case BUILT_IN_TRAP:
14432 case BUILT_IN_SAVEREGS:
14433 case BUILT_IN_POPCOUNTL:
14434 case BUILT_IN_POPCOUNTLL:
14435 case BUILT_IN_POPCOUNTIMAX:
14436 case BUILT_IN_POPCOUNT:
14437 case BUILT_IN_PARITYL:
14438 case BUILT_IN_PARITYLL:
14439 case BUILT_IN_PARITYIMAX:
14440 case BUILT_IN_PARITY:
14441 case BUILT_IN_LABS:
14442 case BUILT_IN_LLABS:
14443 case BUILT_IN_PREFETCH:
14444 return true;
14446 default:
14447 return is_simple_builtin (decl);
14450 return false;